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Pause sequences facilitate entry into long-lived paused states by reducing RNA polymerase transcription rates.

Nat Commun. 2018; 
Gabizon R, Lee A, Vahedian-Movahed H,, Ebright RH, Bustamante CJ,,.
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摘要

Transcription by RNA polymerase (RNAP) is interspersed with sequence-dependent pausing. The processes through which paused states are accessed and stabilized occur at spatiotemporal scales beyond the resolution of previous methods, and are poorly understood. Here, we combine high-resolution optical trapping with improved data analysis methods to investigate the formation of paused states at enhanced temporal resolution. We find that pause sites reduce the forward transcription rate of nearly all RNAP molecules, rather than just affecting the subset of molecules that enter long-lived pauses. We propose that the reduced rates at pause sites allow time for the elongation complex to undergo conformational changes r... More

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