Action potential propagation begins (is first generated at) what region of a neuron?

Answers

Answer 1

The beginning of an action potential triggers close to the presynaptic cell's soma and the impulse's axonal propagation to presynaptic terminals.

Action potentials' fidelity, timing, and waveform during their transmission and arrival at the presynaptic terminal influence critical aspects of the synchronisation and effectiveness of synaptic communication at glutamate synapses in glutamate transmission.

Voltage-gated sodium conductances are crucial for initiating and spreading action potentials in neurons. Within milliseconds, voltage-gated sodium channels are activated and deactivated. Sodium channels open as the cell membrane becomes depolarized, causing an influx of sodium ions to depolarize the membrane further.

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Action Potential Propagation Begins (is First Generated At) What Region Of A Neuron?

Related Questions

If the two groups involved in an experiment are not equivalent, ________. it is impossible to conduct a replication it cannot be ascertained that the independent variable caused the results the experiment is said to have high internal validity the experimental result is likely to be affected by ethnocentrism

Answers

If the two groups involved in an experiment are not equivalent,

it cannot be ascertained that the independent variable caused the results.

The experimental group, also known as the treatment group, receives the treatment whose effect the researchers wish to study, while the control group does not. They should be identical in all other respects. We know that if we two groups participate in any kind of experiment, we know that the study of that experiment is not equivalent, nor that the experiment cannot be determined with certainty in which independent variable produces, arises, or causes results and outcomes. . Therefore, this option is true.

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Assessment of genetic risk for distribution of total interstitial white matter neurons in dorsolateral prefrontal cortex: role in schizophrenia

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Assessment of genetic risk for distribution of total interstitial white matter neurons in dorsolateral prefrontal cortex: role in schizophrenia

It has been demonstrated that tissue engineering scaffolds with oxygen generating components can boost the amount of oxygen and cell viability under some circumstances. In this study, direct-write assembly (robocasting) was used to create biphasic calcium phosphate (BCP) scaffolds with a composition of 60% hydroxyapatite (HA) and 40% beta-tricalcium phosphate (-TCP), which have demonstrated a high potential for bone tissue engineering applications. The three-dimensional (3D) printed scaffolds were then dip-coated with various concentrations of calcium peroxide (CPO), an oxygen releasing agent, and employed for in situ oxygen synthesis in the implanted sites. CPO was contained within a polycaprolactone (PCL) matrix. Different methodologies were used to describe the created scaffolds' morphology, content, and structure.

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Foreign substances in the body that are too small to start an immune response by themselves are called

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Foreign substances in the body that are too small to start an immune response by themselves are called hapten .

Antigens are compounds, typically proteins, found on the surface of bacteria, fungi, viruses, or cells. Antigens can also include nonliving things including poisons, chemicals, medications, and foreign objects (like a splinter). Antigen-containing compounds are recognized by the immune system, which then attempts to destroy them.

What is a hapten in immunology?

Hapten, also spelled haptene, small molecule that stimulates the production of antibody molecules only when conjugated to a larger molecule, called a carrier molecule. Related Topics: epitope antigen.

What is the difference between antigen and hapten?

An antigen is a complete molecule that can initiate an immune response on its own, whereas a hapten is an unfinished molecule that is incapable of initiating an immunological response on its own. Two forms of immunogens that can cause immunological reactions are antigen and hapten.

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The colinearity rule describes Group of answer choices The correlation between the timing and location of expression of homeotic genes. the long stretches of DNA between homeotic gene complexes. the spatial arrangement of alpha helices in proteins encoded by homeotic genes. the correlation between the spatial arrangement of homeotic genes along the chromosome with their expression. the parallel arrangement of homeotic genes between different chromosomes.

Answers

The colinearity rule describes the correlation between the spatial arrangement of homeotic genes along the chromosome with their expression.

There is a correlation between the gene sequence of the Hox cluster inside the chromosome (telomeric to centromeric end) and the sequential activation of these genes in the ontogenetic units that run along the anterior-posterior axis of the embryo. This phenomenon is referred to as the Hox gene collinearity. Despite the fact that this collinearity property is strictly adhered to in bilaterians (such as vertebrates), it is disregarded in all other kinds of animals. The observation was made by E.B Lewis, nearly forty years ago.

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What cortical region is represented by the area at d?

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Answer:

primary visual cortex

The principal area of the brain responsible for receiving, integrating, and processing visual information received from the retinas is known as the visual cortex. It is located in the most backward part of the brain, in the primary cerebral cortex's occipital lobe.

What is the primary visual cortex in the cortical region?

The primary brain region for processing visual information is the occipital lobe. The eyes send visual data to the main visual cortex, also referred to as V1.

Both stationary and phase-encoded polar coordinate stimuli were used to define the retinotopy in each subject's V1 (also known as the primary visual cortex, striate cortex, or Brodmann's area 17).

Maps of the flattened cortical surface were used to illustrate data from V1 and surrounding retinotopic regions.

Therefore, Both cerebral hemispheres' occipital lobes contain the primary visual cortex.

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Which neurotransmitter is considered the major excitatory neurotransmitter?

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Glutamate is considered the major excitatory neurotransmitter.

Mechanism of action:

The neurons use neurotransmitters to interact with one other and their target tissues during the synaptic transmission process (neurotransmission). Nerve endings synthesise neurotransmitters, which are then released from them into the synaptic cleft. From there, receptor proteins in the cellular membrane of the target tissue bind to neurotransmitters. As a result, the target tissue is stimulated, blocked, or otherwise functionally altered.

More than 40 neurotransmitters found in the human neurological system, acetylcholine, norepinephrine, dopamine, gamma-aminobutyric acid (GABA), glutamate, serotonin, and histamine are some of the most significant.

Major excitatory neurotransmitter are

Acetylcholine and Glutamate (ACh) Histamine Dopamine (DA) Noradrenaline (NAd), also known as norepinephrine (NE), Adrenaline (Ad), also known as (Epi)

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2. When the plastic sheet is pulled down (inhalation), what happens to the pressure in the plastic bottle?​

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Answer: (i) Air pressure inside the bell jar increases.

(ii) The balloons inside the jar expand.

(iii)This is similar to the expansion of the lungs during inhalation.

(iv)This is similar to the contraction of the lungs during exhalation.

Explanation:

An X-linked gene is Group of answer choices a gene that is turned on (makes protein) only when the female hormone estrogen is present. a gene on the X chromosome that encodes traits seen only in females. a gene that encodes traits seen only in females. a gene on the X chromosome. a gene found on any chromosome; they are X-shaped when they are metaphase chromosomes.

Answers

An X-linked gene is a gene on the X chromosome.

When a gene is available on the X chromosome, not on the Y chromosome, it is supposed to be X-linked. X-linked genes have different inheritance designs than genes on non-sex chromosomes or can say on autosomes. That is on the grounds that these genes are available in various duplicate numbers in males and females.

These disorders are significantly more typical in men than they are in females because of their X-linked inheritance design.

Females who are heterozygous for disordered alleles are supposed to be carriers, and they ordinarily show no side effects themselves. Children of these females have a 50 percent chance of getting the disorder, yet girls have minimal possibility of getting the disorder (except if the dad likewise has it), and will rather have a 50 percent chance of being carriers.

The alleles for specific circumstances including a few types of color blindness, hemophilia, and muscle dystrophy are X-linked.

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To protect against termites and to provide for ventilation, a ________________ is built beneath the home.

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Crawl space

To protect against termites and to provide ventilation, a crawl space is built beneath the home.

What is the purpose of a crawl space?

Similar to a basement, a crawl space has vents that let outside air in. There are some crawl spaces that are full height, like a basement, while there are others that are only two feet tall or less, requiring you to crawl on your belly.

The ability to more readily access the systems, such as the wiring, plumbing, gas hookups, and ventilation, is the main advantage of a crawl space over a concrete slab foundation.

At the top of the foundation wall, there are many air vents for ventilated crawl areas. In order to allow unrestricted movement of outside air throughout the room, the vents are positioned across from one another.

Crawl spaces are also the preferred type of foundation in regions where termites or excessive moisture damage the earth.

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What is the correct order for structures in the nervous system pathway for hearing? a. axons project to the auditory cortex. b. axons project to inferior colliculi.

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The correct order of structures in the nervous system pathway to hearing is that axons project to the auditory cortex.

 A. Axons project to the auditory cortex.

Inferior colliculus neurons send their axons to the medial geniculate nucleus (MGN) of the thalamus, which in turn projects to the auditory cortex.

What is the route of the roads?

The cochlear nerve passes through the internal acoustic meatus in the temporal bone and enters the brainstem in the upper part of the medulla, at its junction with the pons, next to the facial nerve (VII), in the region of the cerebellopontine angle.

Which part of the brain controls hearing?

Temporal Lobe: located near the ear, it is responsible for the perception of hearing, enabling the analysis of sounds. In addition, it functions as a processor of memory and emotions.

With this information, we can conclude that We hear when sound waves travel through the air to our eardrum and then through the middle ear to our inner ear and from there finally to the auditory centers of our brain. Our ears are always active, continually transporting sounds along this auditory pathway.

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Increased ADH secretion should cause the urine to have:____.
a. a higher ph.
b. a lighter color.
c. a higher specific gravity.
d. a lower urea concentration.

Answers

Increased ADH secretion should cause the urine to have a lower urea concentration.

This means that when the level of Antidiuretic hormone, secretion is increased, it lowers the concentration of urea in the urine

What are hormones?

Hormones can be defined as those chemical messangers or substances which are released to sites where they are need to effect action within the body system

Some few examples of hormones are:

AdrenalineInsulinGlucagonAntidiuretic hormonesAldosteroneAdrenocorticotropic hormoneOxytocinAuxinGibberellin

Increased ADH secretion should cause the urine to have a lower urea concentration.

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Which of the following statements is true regarding the movement of substances across cell membranes

Answers

Answer:

Please present the options given so we can assist you better

Explanation:

Water, carbon dioxide, and oxygen are among the few simple molecules that can cross the cell membrane by diffusion (or a type of diffusion known as osmosis ). Diffusion is one principle method of movement of substances within cells, as well as the method for essential small molecules to cross the cell membrane.

Animals that lie in cold climates tend to have higher proportions of __________ fatty acid residues in their lipids than do animals that live in warm climates.

Answers

Answer is polyunsaturated fatty acid residues
Reason

The higher amount of polyunsaturated fatty acids prevents fats from becoming solid in the layer of fat that animals in cold climates use to insulate themselves.

what is meant by a mutualistic type of symbiotic relationship

Answers

The mutualistic type of symbiotic relationship is when two organisms benefit from one another. Details about mutualistic relationship is found below.

What is mutualism?

Mutualism is any interaction between two species that benefits both species of organisms.

Mutualistic relationship typically involves the exchange of substances or services between the involved parties.

For example, the relationship where the egret feeds on the cattle to get rid of parasites is a mutualistic relationship.

Therefore, the mutualistic type of symbiotic relationship is when two organisms benefit from one another.

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The simple meaning of mutualistic type of a symbiotic relationship is that both organisms benefits from each other

What is symbiosis?

Symbiosis can be defined as a special type of biological association which exist between two different organisms in which the two benefits from each other

In symbiosis, each organism is called a symbiont.

So therefore, te simple meaning of mutualistic type of a symbiotic relationship is that both organisms benefits from each other

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PLEASE HELP! I GOING TO FAIL!

Nutrients are brought to spongy bone through which mechanism? (2 points)

Transport through Haversian canals
Diffusion through canaliculi
Diffusion through the lacuna
Transport through collagen fibers

I'm completely sure it's not the first option, but I don't know which one it is!!!!

Answers

Answer:

DIFFUSION THROUGH CANALICULI.

Explanation:

Through the process of diffusion through the canaliculi, nutrients are delivered to compact bone. Osteocyte communication occurs through microscopic channels called canaliculi that exist between lacunae.

You got this! Don't think that you're going to fail! Stay in there!

The answer would be Diffusion through canaliculi and arteries that pass through the compact bone foraminifera

05.01 LC) What forms white light? O Combination of all the wavelengths of ultraviolet light O Combination of all the wavelengths of visible light O Absorption of electromagnetic rays Absorption of infrared rays​

Answers

Answer:

A.) Combination of all wavelengths of ultraviolet light

Explanation:

White light is formed when all infrared and visible light wavelengths are reflected. However, white light is also created when UV wavelengths are absorbed.

Hemophilia is a sex–linked disorder that is caused by a defective gene on the X chromosome. What will be the pattern of inheritance of the offspring of a hemophiliac father?

Answers

From what I believe, 50%. The chromosome from the father can either be X or Y, so it’s a chance to carry it in the X gene if the child is a girl. If its a boy, then it has no chance of carrying the gene. Hope this helps

What is the outcome of amino acids if someone overeats protein and calories in general?

Answers

The outcome of amino acids if someone overeats protein and calories in general is "the amino acids are stored as fat".

What is amino acid?

Amino acids are molecules that combine to form proteins. Amino acids and proteins are the building blocks of life.

You need amino acids for vital processes such as building proteins, hormones, and neurotransmitters.

Amino acids are concentrated in protein-rich foods such as;

meat, fishegg soybeans, etc

What are calories?

Calorie is a unit of energy. This derived from eating energy giving foods.

Excess calories in the body is often store d as fat.

Thus,  the outcome of amino acids if someone overeats protein and calories in general is "the amino acids are stored as fat".

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_____ is a gene silencing technique that is based on the fact that RNA molecules can fold into short, double-stranded regions where the base sequence is complementary.

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RNAi is a gene silencing technique that is based on the fact that RNA molecules can fold into short, double-stranded regions where the base sequence is complementary.

What is the RNAi mechanism?

A conserved biological response to double-stranded RNA, known as RNA interference (RNAi) or post-transcriptional gene silencing (PTGS), promotes resistance to both endogenous parasites and exogenous harmful nucleic acids and controls the expression of protein-coding genes. Small double-stranded RNA (dsRNA) molecules are used as triggers by most eukaryotic cells' RNA interference (RNAi) regulatory mechanisms to direct homology-dependent control of gene activity.

In order to protect plants from molecular parasites like viruses, RNA silencing has evolved. In controlling gene expression for growth and development, it is also helpful. These pathways interact with one another and generate short RNAs to function.

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You cut down a tree and count 23 annual rings in the trunk. you conclude that the tree is:____.

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Each ring marks an entire cycle of seasons, or one year, within the tree's life. Hence 23 rings shows 23 years of trees life . Measurement of tree rings are based on Radiocarbon dating. These rings can tell us how old the tree is, and what the weather was like during each year of the tree's life. The light-colored rings represent wood that grew in the spring and early summer, while the dark rings represent wood that grew in the late summer and fall.

Rings of trees growing in temperate climates can indeed tell their age through their annual rings and also help determine the age of wood used to construct buildings or wooden objects.

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Why must the formulas of hydrates have the number of water molecules as whole number integers?

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The formula for hydrate indicates the number of water molecules that are attached to each formula unit of the compound. Forexample, nickel (II) sulfate hexahydrate is a green/blue solid that has six water molecules included in the crystal foreach Ni2+and each SO42-ion.Many common minerals are

What is a hydrate ?

Any compound containing water in the form of H2O molecules, usually, but not always, with a definite content of water by weight.

The best-known hydrates are crystalline solids that lose their fundamental structures upon removal of the bound water.

Hydrates are formed when water and light end natural gases come into contact at certain temperature and pressure conditions

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To be injured by an animal with poisonous spines, you must: Select one: Be within a radius of 3 m/10 ft, as most poisonous animals cannot shoot their spines farther than this. Be the aggressor and touch the animal first. Be bare-handed, as most spines cannot pass through gloves. None of the above.

Answers

To be injured by an animal with poisonous spines, you must: be the aggressor and touch the animal first.

What is the use of spines in animals?Spines are hard, needle-like anatomical structures found in both vertebrate and invertebrate species. The spines of most spiny mammals are modified hairs, with a spongy center covered in a thick, hard layer of keratin and a sharp tip.Spines on an animal’s body help defend it.They can be irritating or painful, or difficult to swallow. Spines are also important tools for communication, shock absorption, and rain protection.Animals like porcupine shoot their spines (quills) for defense. Some spines can also pass through gloves.To prevent attacked by an animal with poisonous spines you must remain calm and observe your surroundings.

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Rudolph the Reindeer has a red nose (n), which is a recessive trait. Betsy the Reindeer has a black nose (N), which is a dominant trait, and she does not carry the recessive allele. Assume the rules of human genetics also apply to reindeer. If Rudolph and Betsy have a calf, what will its genotype be?

Answers

According to the rules of human genetics, if Betsy and Rudolph have a calf it will have a black nose.

What are alleles?

The substance that is stably passed down, unchanged, from parent to offspring through the gametes, over successive generations is called as ‘factors’ now called as genes.Genes, therefore, are the units of inheritance. They contain the information that is required to express a particular trait in an organism. Genes which code for a pair of contrasting traits are known as alleles, i.e., they are slightly different forms of the same gene.Since Betsy has a dominant trait and doesn't carry any recessive gene and Rudolf has a recessive trait, their phenotypes will be NN and nn respectively. Mendel proposed that in a pair of dissimilar factors, one dominates the other and hence is called the dominant factor while the other factor is recessive. In this case N (for black nose) is dominant over n (for red nose), that is recessive. From the punnet square it is seen that the all the fertilisations lead to individuals having 'black nose' only and none of them will have 'red nose'. Within the genotypic pair Nn only one character N 'black nose' is expressed. Hence the character N or ‘black nose’ is said to dominate over the other allele n or ‘red nose’ character. It is thus due to this dominance of one character over the other that all the calf will have 'black nose' with Nn as the genotype.

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Durairajanayagam D, Agarwal A, Ong C. Causes, effects and molecular mechanisms of testicular heat stress. Reproductive biomedicine online. 2015 Jan 1;30(1):14-27.

Answers

Temperature affects spermatogenesis, which functions best at body temperatures just a little lower than those.

Abstract:

To keep testicular temperatures below those of the body core, adequate thermoregulation is essential. The process of mammalian spermatogenesis and the resulting spermatozoa are negatively impacted by elevated testicular temperature. Therefore, sperm quality can be affected and the likelihood of infertility is increased by thermoregulatory dysfunction resulting in heat stress. This article reviews a variety of internal and external factors that may lead to testicular heat stress. We go into more detail on how heat stress affects the spermatogenesis process, the resulting epididymal spermatozoa, germ cells, and the alterations that result in the testis.

We also go over the chemical reactions of germ cells to heat exposure and potential processes, such as apoptosis, DNA damage, and autophagy, that could lead to heat-induced germ cell damage. Further explanation is provided for the intrinsic and extrinsic processes involved in the complex mechanism of germ cell death. These intricate apoptotic pathways ultimately result in the demise of germ cells.

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I WILL MARK U BRAINLIEST IF U ANSWER THIS QUESTION!

Cold-blooded animals, such as frogs, are able to deliver blood to their cells once their bodies
warm up. Predict what time of day you think frogs are likely to be most active.

Answers

Answer:

Morning or night

Explanation:

Depending on what time of day is the coolest, cold-blooded animals will be more active during that time. So I know that where I live, it is coolest early morning or late at night but most likely they wouldn't be active during the middle of the day when it is the hottest.

The oligocene deposits in the fayum of egypt contain many of the earliest-known ____ fossils.

Answers

The oligocene deposits in the fayum of Egypt contain many of the earliest-known  monkeys fossils.

Egypt is the most significant Oligocene location. The first signs of the developing old world monkeys have been found in the Fayum region of the Western Desert, specifically in the Qasr El Sagha and Jebel Qatrani formations. This paleoenvironment was home to the Oligocene higher primates Aegypto..pithecus, Proplio..pithecus, Para..pithecus, and Api..dium, both of which are known to have been arboreal based on their postcranial fossils.The first two are from the Sagha Formation, officially the latest Eocene in age, but the deposits are continuous, along with some other unknown affinities.

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Explain how the larger growth of algae adversely affect the life of aquatic animals.

Answers

Answer:

Harmful algal blooms sometimes create toxins that are detrimental to fish and other animals. After being consumed by small fish and shellfish, these toxins move up the food chain and can impact larger animals like sea lions, turtles, dolphins, birds and manatees.

Explanation:

You are examining a gene that normally has the sequence ACGATTTGGCGCBut in the mutant fruit fly you have produced, you see the sequence ATGATTTGGTGTWhat likely caused this mutation?a. Mutations induced by UV.b. Spontaneous mutations within the cell.c. Mutations induced by benzopyrene.d. It is impossible to predict what caused this type of mutation.e. Mutations induced by HNO2.

Answers

Mutations induced by UV.

The answer is option A.

They have a defect of their "curly gene," that's on the second chromosome. Having curled wings is a dominant mutation, this means that only one copy of the gene must be altered to supply the disorder. In reality, if both copies are mutated, the flies do not continue to exist.

Geneticists have lengthily counseled that mutations in insect pigment genes reason for modifications in the fly's brain because these pigments are crafted from dopamine, a chemical messenger that acts in the brain.

Thru those early experiments, he located that every one of the white-eyed flies being produced was a man, there were no white-eyed women in any respect. Inheritance of the white-eye trait might have a basis within the chromosomes, greater, in particular, the sex chromosomes.

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3. The table below shows factors that could be present in a population. Next to each factor,
write whether this would cause natural selection or not.

Answers

Answer:

1.) No

2.)Yes

3.)No

4.)Yes

5.)No

Explanation: Hope this helped!

What are ribosomes? state their functions ​

Answers

Answer:

Ribosomes, also called Palade granules, are macromolecular machines, found within all cells, that perform biological protein synthesis.

Explanation:

Function: The ribosome reads the messenger RNA (mRNA) sequence and translates that genetic code into a specified string of amino acids, which grow into long chains that fold to form proteins.

Answer:

a minute particle consisting of RNA and associated proteins found in large numbers in the cytoplasm of living cells. They bind messenger RNA and transfer RNA to synthesize polypeptides and proteins.

Explanation:

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