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horrorfan [7]
3 years ago
13

The process of protein denaturation Multiple Choice: a) is only possible in proteins with quaternary structure. b) is permanent

and irreversible. c) changes the form of a protein, but not its function. d) is temporary and reversible.
Biology
1 answer:
pav-90 [236]3 years ago
7 0

Answer:

The correct option is D.

Explanation:

Protein generally are very sensitive macro molecules; they have specific temperatures and pH that are ideal for their operations, this is especially true for proteins that act as enzymes in biochemical reactions.

There are four different types of structures that a protein can assume, these are primary, secondary, tertiary and Quaternary structure. The structure of a protein determines the kind of function it can perform.

There are some factors that can destroy the structure and functions of proteins, these include excessive heat and pH. A protein is said to be denatured when its secondary and tertiary structure have been disrupted or destroyed. Denaturation does not affect the primary structure of the protein, thus, the peptide bond remains intact.

Denaturation is usually temporary and can be reversed if the factors that cause denaturation is removed, this process is called RENATURATION. Renaturation process allow the protein to refold and resume its functions.  But sometimes,  denaturation  can be permanent and irreversible leading to permanent loss of protein functions.

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i beleive the answer is B.

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7 0
4 years ago
Consider a locus with two alleles - B and b. B is dominant, while b is recessive. There is no mutation. B has a selective advant
salantis [7]

The given question is incorrect. The correct question is as follows:

Consider a locus with two alleles - B and b. B is dominant, while b is recessive. There is no mutation. B has a selective advantage relative to b, so that the fitnesses of the three genotypes are BB = 1, Bb = 1, and bb = 1-s. In this case, s = 0.50, so that bb homozygotes have 50% fitness of heterozygotes and BB homozygotes. If the population has the following genotypic counts prior to selection of BB = 500, Bb = 250, and bb = 250, what is the frequency of B after one generation with selection? Please give your answer to two decimal places.

Answer:

0.63

Explanation:

According to hardy Weinberg equilibrium the frequencies of the population remains stable from one generation to the next generation unless no selection or mutation is experienced by the population.

The frequency of B after one generation with selection can be calculated as follows:

Given, BB = 500, Bb = 250, and bb = 250.

Frequency (B) = 2 × BB + Bb / 2 × total number of individual.

Frequency (B) = 2 × 500 + 250 / 2 × 1000.

Frequency (B) = 1250 / 2000 = 0.625 = 0.63.

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6 0
4 years ago
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<span> A. ADP + P + energy
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ADP + P + energy were combined in a cell to convert a lower-energy molecule into a higher-energy molecule
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7 0
4 years ago
identify the type of solution (Hypotonic, Isotonic and Hypertonic) in each of the beakers. Write your answers as A=..., B=..., C
Pavlova-9 [17]

Answer:

Beaker A= Isotonic

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Hypo means less.

Hyper means more.

8 0
3 years ago
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