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NCERT Exemplar · Q15

Q.Which of the following steps in transcription is catalysed by RNA polymerase?

(a) Initiation
(b) Elongation
(c) Termination
(d) All of the above
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RNA polymerase itself catalyses only the elongation step of transcription. Initiation and termination both need separate, transiently-associating factors — sigma (σ) for initiation and rho (ρ) for termination — so the correct answer is (b) Elongation.

Transcription is conventionally described in three steps — initiation, elongation, and termination — and it is tempting to assume the single enzyme "RNA polymerase" personally drives all three from start to finish. The textbook is precise on this point, though, and the precision matters: RNA polymerase, on its own, is only capable of catalysing elongation.

During initiation, the enzyme cannot recognise the promoter and begin transcription by itself. It requires help from an initiation factor, sigma (σ), which associates with the core RNA polymerase to form the "holoenzyme" capable of locating the promoter and starting RNA synthesis. Once transcription is under way, the sigma factor is released — its job (recognition and start-up) is done.

Elongation is the one step the polymerase carries out entirely on its own. Freed of the sigma factor, the core enzyme moves along the template strand, reading it 3'→5' and adding complementary ribonucleotides to the growing RNA chain in the 5'→3' direction. This continuous bond-forming activity — genuine catalysis, nucleotide by nucleotide — is what "catalysed by RNA polymerase" is really describing.

Note

This is exactly why sigma and rho are called transient factors: they associate with the polymerase only for as long as their specific job (starting or stopping) requires, and are not part of the core enzyme that does the actual elongation chemistry. …

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