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RNA Polymerase, Exons, Introns Video Lecture - NEET

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FAQs on RNA Polymerase, Exons, Introns Video Lecture - NEET

1. What is the role of RNA Polymerase in gene expression?
Ans. RNA Polymerase is an enzyme responsible for transcribing DNA into RNA during gene expression. It binds to the DNA template strand and synthesizes a complementary RNA molecule using nucleotides as building blocks.
2. What are exons and introns in the context of gene expression?
Ans. Exons are the coding regions of a gene that contain the instructions for protein synthesis. They are expressed and transcribed into RNA, which is then translated into proteins. On the other hand, introns are non-coding regions of DNA that are interspersed between exons. They are transcribed into RNA but are removed during the process of splicing before the final mRNA is produced.
3. How does RNA Polymerase recognize the start and end of a gene?
Ans. RNA Polymerase recognizes the start of a gene by binding to a specific DNA sequence called the promoter region. This region contains a specific sequence of nucleotides that signals the start of transcription. The end of the gene is recognized by a termination signal, which is a sequence that causes the RNA Polymerase to detach from the DNA template and release the newly synthesized RNA molecule.
4. What is the significance of splicing in gene expression?
Ans. Splicing is a crucial step in gene expression that involves the removal of introns and the joining together of exons in the pre-mRNA molecule. This process allows for the production of a mature mRNA molecule that can be translated into a functional protein. Splicing increases the diversity of proteins that can be generated from a single gene by allowing different combinations of exons to be included or excluded.
5. How does RNA Polymerase differ from DNA Polymerase?
Ans. RNA Polymerase and DNA Polymerase are both enzymes involved in nucleic acid synthesis, but they have distinct differences. RNA Polymerase synthesizes RNA molecules by using a DNA template, whereas DNA Polymerase synthesizes DNA molecules by using a DNA template. Additionally, RNA Polymerase does not require a primer to initiate transcription, unlike DNA Polymerase, which requires a primer for DNA replication.
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