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RNA : Adapter Molecule Video Lecture | Biology Class 12 - NEET

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FAQs on RNA : Adapter Molecule Video Lecture - Biology Class 12 - NEET

1. What is an adapter molecule in RNA?
Ans. An adapter molecule in RNA is a small RNA molecule that plays a crucial role in protein synthesis by connecting the genetic information encoded in DNA to the amino acid sequence of proteins. It acts as a bridge between the messenger RNA (mRNA) and the transfer RNA (tRNA) during translation.
2. How does an adapter molecule work in protein synthesis?
Ans. The adapter molecule, also known as a transfer RNA (tRNA), carries a specific amino acid to the ribosome, the cellular machinery responsible for protein synthesis. It recognizes the codon on the mRNA strand through its anticodon region, ensuring that the correct amino acid is added to the growing polypeptide chain.
3. What is the significance of adapter molecules in gene expression?
Ans. Adapter molecules, or tRNAs, are essential for accurate and efficient translation of the genetic code into proteins. They ensure that the correct amino acid is incorporated into the growing polypeptide chain based on the information encoded in the mRNA. Without adapter molecules, protein synthesis would be compromised, leading to errors and dysfunctional proteins.
4. Are adapter molecules specific for certain amino acids?
Ans. Yes, adapter molecules, or tRNAs, are specific for certain amino acids. Each tRNA molecule is responsible for carrying a specific amino acid and has an anticodon region that recognizes the corresponding codon on the mRNA during translation. This specificity ensures that the correct amino acid is added to the growing protein chain.
5. Can adapter molecules be modified or altered in any way?
Ans. Yes, adapter molecules can undergo various modifications or alterations that can affect their functionality. For example, post-transcriptional modifications, such as nucleotide modifications or base editing, can occur in tRNA molecules, influencing their stability and accuracy in protein synthesis. Additionally, certain diseases or genetic mutations can lead to alterations in adapter molecules, resulting in impaired protein synthesis and related disorders.
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