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Ch. 14 - Translation and Proteins
Klug - Concepts of Genetics 12th Edition
Klug12th EditionConcepts of GeneticsISBN: 9780135564776당신이 사용하는 게 아니라요?교과서 변경
14장, 문제 8

Summarize the steps involved in charging tRNAs with their appropriate amino acids.

검증된 단계별 안내
1
Identify the specific amino acid and its corresponding tRNA molecule, which has an anticodon complementary to the mRNA codon for that amino acid.
Recognize that the enzyme aminoacyl-tRNA synthetase catalyzes the attachment of the amino acid to its correct tRNA; each amino acid has its own specific synthetase.
Understand that the charging process begins with the activation of the amino acid by reacting it with ATP, forming an aminoacyl-AMP intermediate and releasing pyrophosphate (PPi). This can be represented as: \[\text{Amino acid} + \text{ATP} \rightarrow \text{Aminoacyl-AMP} + \text{PPi}\]
Next, the activated amino acid is transferred from aminoacyl-AMP to the 3' end of the tRNA, forming aminoacyl-tRNA and releasing AMP: \[\text{Aminoacyl-AMP} + \text{tRNA} \rightarrow \text{Aminoacyl-tRNA} + \text{AMP}\]
Finally, the charged tRNA (aminoacyl-tRNA) is released from the synthetase enzyme and is now ready to deliver its amino acid to the ribosome during protein synthesis.

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주요 개념

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Role of tRNA in Protein Synthesis

Transfer RNA (tRNA) molecules serve as adaptors that translate the genetic code from mRNA into amino acids during protein synthesis. Each tRNA carries a specific amino acid and has an anticodon that pairs with the corresponding codon on the mRNA, ensuring correct amino acid incorporation.
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Aminoacyl-tRNA Synthetase Enzymes

Aminoacyl-tRNA synthetases are enzymes that catalyze the attachment of amino acids to their corresponding tRNAs. Each enzyme is specific to one amino acid and its compatible tRNAs, ensuring high fidelity in matching amino acids to the correct tRNA molecules.
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Two-step Charging Process of tRNA

Charging tRNA involves a two-step reaction: first, the amino acid is activated by ATP to form aminoacyl-AMP; second, the activated amino acid is transferred to the 3' end of the tRNA. This process forms aminoacyl-tRNA, which is then ready to participate in translation.
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