Anticodons example sentences

Related (3): codons, tRNA, ribosomes

"Anticodons" Example Sentences

1. The anticodons of the tRNA molecules are responsible for pairing with codons on the mRNA.
2. The three nucleotides that make up the anticodons are crucial in decoding genetic information.
3. Mutations in the anticodons can result in incorrect amino acids being added to a growing protein chain.
4. The specificity of the anticodons ensures that the correct amino acid is added to the protein chain.
5. The pairing between codons and anticodons is a critical step in translation.
6. The formation of the correct codon-anticodon pair guarantees the synthesis of a functional protein.
7. The binding between the anticodon of the tRNA and the codon of the mRNA allows for the transfer of the amino acid.
8. There are 64 possible combinations of codons and anticodons that can be formed.
9. The sequence of anticodons determines the sequence of amino acids in a protein.
10. The structure of the anticodon allows it to recognize and bind to a specific codon.
11. The wobble position in the anticodon allows for flexibility in the pairing with the third position of the codon.
12. The anticodons are located on the tRNA molecule, which serves as the adapter between the mRNA and the amino acids.
13. The codons and anticodons must be complementary to each other in order to form a stable complex.
14. The ribosome facilitates the interaction between the codons and anticodons during translation.
15. The binding energy between the codons and anticodons contributes to the stability of the translation complex.
16. The presence of modified bases in the anticodons can affect the accuracy of the translation process.
17. The tRNA synthetases recognize and attach the appropriate amino acid to the tRNA molecule based on the anticodon sequence.
18. The formation of a mispaired codon-anticodon complex can lead to a ribosomal stalling or mistranslation event.
19. The translation machinery relies on the accurate recognition of codons and anticodons to synthesize functional proteins.
20. The interactions between the codons and anticodons occur in the A-site of the ribosome.
21. The ability of the anticodons to accurately read the genetic code is a fundamental aspect of molecular biology.
22. The genetic code is a set of rules that correlates the codons with the corresponding anticodons and amino acids.
23. The triplet nature of the genetic code allows for the creation of a large diversity of sequences based on the codons and anticodons.
24. The structure of the ribosome provides a platform for the effective recognition and pairing of the codons and anticodons.
25. The precise base pairing between the codons and anticodons is essential for the fidelity of the translation process.
26. The decoding accuracy of the anticodons is essential for the correct functioning of the cellular machinery.
27. The speed and accuracy of the codon-anticodon recognition process is critical for the timely synthesis of functional proteins.
28. The recognition and interaction between the codons and anticodons is a highly conserved process that is present across all domains of life.
29. The specificity of the anticodons ensures that each amino acid is incorporated into the correct position of the protein chain.
30. The anticodons undergo numerous conformational changes during the decoding process to ensure proper pairing with the codons.

Common Phases

1. The anticodons pair with codons to ensure proper amino acid sequence during protein synthesis;
2. During translation, the anticodon of a transfer RNA molecule binds to the complementary codon in messenger RNA;
3. Mutations that occur in the anticodon region can affect the accuracy of protein synthesis;
4. The anticodon loop of transfer RNA is crucial for recognizing the correct codon and delivering the proper amino acid;
5. The process of charging transfer RNA with its corresponding amino acid involves a specific enzyme recognizing the anticodon sequence.

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