Accuracy in the translation of mRNA into the primary structure of a polypeptide depends on:Select one alternative:amino acids being attached to tRNA molecules that contain the correct codon.the anticodon binding to the corresponding codon.small ribosomal subunits binding to specific large ribosomal subunits.ribosomes binding to specific mRNA molecules.
Question
Accuracy in the translation of mRNA into the primary structure of a polypeptide depends on:Select one alternative:amino acids being attached to tRNA molecules that contain the correct codon.the anticodon binding to the corresponding codon.small ribosomal subunits binding to specific large ribosomal subunits.ribosomes binding to specific mRNA molecules.
Solution
The accuracy in the translation of mRNA into the primary structure of a polypeptide depends on the anticodon binding to the corresponding codon.
Here's why:
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The process of translation involves the conversion of the genetic code in mRNA into an amino acid sequence that makes up a polypeptide.
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This process involves tRNA molecules, each of which carries a specific amino acid and has an anticodon region that can base pair with the complementary codon on the mRNA.
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The ribosome facilitates this matching process. It moves along the mRNA, matching the tRNA anticodon with the mRNA codon. If the match is correct, the amino acid carried by the tRNA is added to the growing polypeptide chain.
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Therefore, the accuracy of this process largely depends on the correct matching of the anticodon on the tRNA to the codon on the mRNA. If this matching is incorrect, the wrong amino acid will be incorporated into the polypeptide, potentially altering its function.
So, the correct answer is: the anticodon binding to the corresponding codon.
Similar Questions
On an mRNA, the triplet grouping of ribonucleotides used by the translation machinery during polypeptide synthesis.Group of answer choicesexoncodonprimary transcriptTATA boxreading frameintron
During the process of translation, the growing polypeptide chain is released from the ribosome when:Select one:a. A chain terminating codon is reachedb. The poly A tail is reachedc. A chain terminating tRNA binds to the ribosomed. The 7-methylguanosine cap is reached
During the mRNA translation, in what site of the ribosome binds the incoming tRNA molecule carrying the amino acid that will be added to the growing polypeptide chain? Z-site E-site W-site P-site A-site
During the process of translation:Select one:a. The incoming tRNA must first bind to the E siteb. Initiation begins with the binding of the ribosomal larger subunit to the polyA tail of the mRNAc. The peptide is passed from tRNA in the P site to the tRNA at the A sited. The mRNA is translated by one ribosome at a time
Translation of mRNA to produce proteins is highly regulated. For example, one factor that regulates eukaryotic translation is the polyadenylate binding protein (PABP). PABP upregulates translation by binding the poly-A tail of an mRNA molecule (ie, the 3' end of mRNA consisting of multiple adenosine residues) to help recruit the ribosome.PABP consists of a single polypeptide chain and contains four distinct RNA recognition motifs (RRM's), each of which contains four β-strands and two α-helices. Mutation experiments revealed that each RRM binds poly-A tails through residues in several β-strands. Crystallography showed that the two α-helices in each RRM, which consist of amino acids 9-24 and 52-60, respectively, help hold the β-strands in the correct orientation for RNA binding.In addition to binding poly-A tails, PABP can also bind to the eukaryotic initiation factor eIF4G through the α-helices in the RRM regions. When both eIF4G and mRNA with a poly-A tail are present with PABP, a ternary complex between the three molecules can form. This complex further enhances translation relative to the PABP-mRNA complex alone. To better characterize these binding interactions, PABP was electrophoresed in a native gel in the presence of mRNA containing a poly-A tail. When eIF4G was added, PABP affinity for poly-A tails increased 10-fold. Additional observations revealed that the affinity of PABP for eIF4G increased 12-fold when mRNA with a poly-A tail was added. Question 55Each of the following amino acid residues is likely to be found in the portion of the RRM that binds eIF4G EXCEPT:A.LeucineB.ArginineC.GlycineD.Serine
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