Concept:
• Eukaryotic Transcription: Unlike prokaryotes, which utilize a single RNA polymerase to transcribe all types of RNA, eukaryotic cells exhibit a clear division of labor with three distinct RNA polymerase enzymes in their nucleus:
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• RNA Polymerase I: Transcribes ribosomal RNAs (28S, 18S, and 5.8S rRNAs), which are structural and catalytic components of ribosomes.
• RNA Polymerase II: Transcribes protein-coding genes to produce heterogeneous nuclear RNA (
hnRNA), which serves as the direct precursor of messenger RNA (mRNA).
• RNA Polymerase III: Transcribes transfer RNA (tRNA), 5S rRNA, and other small nuclear RNAs (snRNAs).
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Step 1: Understand the nature of precursor mRNA in eukaryotes
In eukaryotic transcription of protein-coding genes, the immediate product is not a fully functional messenger RNA (mRNA). Instead, a primary transcript called heterogeneous nuclear RNA (hnRNA) or precursor mRNA (pre-mRNA) is synthesized. This pre-mRNA contains both coding sequences (exons) and non-coding sequences (introns) and must undergo post-transcriptional processing (capping, tailing, and splicing) to become mature, functional mRNA.
Step 2: Identify the specific transcribing enzyme
Based on the division of labor in eukaryotic nuclei:
• RNA Polymerase I is restricted to transcribing ribosomal RNA genes.
• RNA Polymerase III is restricted to smaller functional RNA genes, such as tRNAs and the 5S ribosomal subunit.
• RNA Polymerase II is responsible for transcribing structural, protein-coding genes into hnRNA (pre-mRNA).
Thus, the enzyme that synthesizes precursor mRNA is RNA Polymerase II, which corresponds to option (C).