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There are about 20,000 human protein-coding genes. How can human cells make 75,000-100,000 different proteins?

Short Answer

Expert verified

Every gene present in the cell can produce different types of mRNA and, in turn, produce mRNA. It can lead to the formation of multiple proteins.

Step by step solution

01

Definition of coding and non-coding genes

There are two types of regions present in a gene, known as a coding and non-coding gene. The coding genes are the genes that code for a particular protein. The non-coding genes are the genes that do not code for a protein.

In a whole DNA segment, the coding regions are limited compared to the non-coding region. Humans possess 20,000 coding genes.

02

Explanation of protein synthesis

The translation is the process of protein synthesis. The proteins are decoded from the nucleotides from the mRNA to create a protein. There are many proteins formed from the mRNA.

In human cells, more than 75,000 to 1 lakh proteins are produced.

03

Reason for the formation of different types of proteins

Exons are the coding region present in the mRNA sequences.Alternative splicing is the mechanism that incorporates or removes the non-coding region to produce different types of several proteins. It is the process that can increase the diversity of protein in a living organism.

It is the reason that several proteins are produced from a limited number of coding genes. The alternative splicing can produce multiple mRNAs from which different types of proteins are made.

Hence, the alternative splicing of the coding region is the reason for the formation of 75,000-100,000 different proteins from 20,000 human protein-coding genes.

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Most popular questions from this chapter

Complete the following table:

Type of RNA

Functions

Messenger RNA(mRNA


Transfer RNA(tRNA)



A ribosome plays a structural role; as a ribozyme. Plays a catalytic role(catalyzed peptide bond formation)

Primary transcript


Small RNAs in the spliceosomes


Would the coupling of the processes shown in Figure 17.24 be found in a eukaryotic cell? Explain why or why not.

Evolution accounts for the unity and diversity of life, and the continuity of life is based on heritable information in the form of DNA. In a short essay (100-150words), discuss how the fidelity with which DNA is inherited is related to the processes of evolution. (Review the discussion of proofreading and DNA repair in Concept 16.2)

In eukaryotic cells, mRNAs have been found to have a circular arrangement in which proteins hold the poly-A tail near the 5โ€™ cap. How might this increase translation efficiency?

In the sequence logo (bottom, left), the horizontal axis shows the primary sequence of the DNA by nucleotide position. Letters for each base are stacked on top of each other according to their relative frequency at that position among the aligned sequences, with the most common base as largest letter at the top of the stack. The height of each letter represents the relative frequency of that base at that position. (a) In the sequence alignment, count the number of each base at position-9 and order them from the most to least frequent. Compare this to the size and placement of each base -9 in the logo. (b) Do the same for position 0 and 1.

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