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Multiple Choice
Which of the following best summarizes the relationship between DNA, mRNA, and proteins according to the central dogma of molecular biology?
A
DNA is transcribed into mRNA, which is then translated into proteins.
B
Proteins are translated into mRNA, which is then transcribed into DNA.
C
Proteins are transcribed into mRNA, which is then translated into DNA.
D
mRNA is transcribed into DNA, which is then translated into proteins.
Verified step by step guidance
1
Step 1: Understand the central dogma of molecular biology, which describes the flow of genetic information in cells. It states that DNA is transcribed into mRNA, and mRNA is then translated into proteins.
Step 2: Break down the process of transcription. During transcription, the DNA sequence of a gene is copied into mRNA using the enzyme RNA polymerase. This occurs in the nucleus of eukaryotic cells.
Step 3: Explain the process of translation. Translation occurs in the cytoplasm, where ribosomes read the mRNA sequence and assemble amino acids into a polypeptide chain based on the codons in the mRNA. This polypeptide chain folds into a functional protein.
Step 4: Evaluate the options provided in the question. Compare each option to the central dogma to determine which one accurately describes the relationship between DNA, mRNA, and proteins.
Step 5: Identify the correct answer as the one that aligns with the central dogma: 'DNA is transcribed into mRNA, which is then translated into proteins.'