Summary information and primary citation

PDB-id
6psq; SNAP-derived features in text and JSON formats; DNAproDB
Class
transcription-DNA
Method
cryo-EM (3.4 Å)
Summary
Escherichia coli RNA polymerase closed complex (trpc) with trar and rpst p2 promoter
Reference
Chen J, Chiu C, Gopalkrishnan S, Chen AY, Olinares PDB, Saecker RM, Winkelman JT, Maloney MF, Chait BT, Ross W, Gourse RL, Campbell EA, Darst SA (2020): "Stepwise Promoter Melting by Bacterial RNA Polymerase." Mol.Cell, 78, 275. doi: 10.1016/j.molcel.2020.02.017.
Abstract
Transcription initiation requires formation of the open promoter complex (RPo). To generate RPo, RNA polymerase (RNAP) unwinds the DNA duplex to form the transcription bubble and loads the DNA into the RNAP active site. RPo formation is a multi-step process with transient intermediates of unknown structure. We use single-particle cryoelectron microscopy to visualize seven intermediates containing Escherichia coli RNAP with the transcription factor TraR en route to forming RPo. The structures span the RPo formation pathway from initial recognition of the duplex promoter in a closed complex to the final RPo. The structures and supporting biochemical data define RNAP and promoter DNA conformational changes that delineate steps on the pathway, including previously undetected transient promoter-RNAP interactions that contribute to populating the intermediates but do not occur in RPo. Our work provides a structural basis for understanding RPo formation and its regulation, a major checkpoint in gene expression throughout evolution.

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