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An ? helix to ? barrel domain switch transforms the transcription factor RfaH into a translation factor.


ABSTRACT: NusG homologs regulate transcription and coupled processes in all living organisms. The Escherichia coli (E. coli) two-domain paralogs NusG and RfaH have conformationally identical N-terminal domains (NTDs) but dramatically different carboxy-terminal domains (CTDs), a ? barrel in NusG and an ? hairpin in RfaH. Both NTDs interact with elongating RNA polymerase (RNAP) to reduce pausing. In NusG, NTD and CTD are completely independent, and NusG-CTD interacts with termination factor Rho or ribosomal protein S10. In contrast, RfaH-CTD makes extensive contacts with RfaH-NTD to mask an RNAP-binding site therein. Upon RfaH interaction with its DNA target, the operon polarity suppressor (ops) DNA, RfaH-CTD is released, allowing RfaH-NTD to bind to RNAP. Here, we show that the released RfaH-CTD completely refolds from an all-? to an all-? conformation identical to that of NusG-CTD. As a consequence, RfaH-CTD binding to S10 is enabled and translation of RfaH-controlled operons is strongly potentiated. PAPERFLICK:

SUBMITTER: Burmann BM 

PROVIDER: S-EPMC3430373 | biostudies-literature | 2012 Jul

REPOSITORIES: biostudies-literature

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An α helix to β barrel domain switch transforms the transcription factor RfaH into a translation factor.

Burmann Björn M BM   Knauer Stefan H SH   Sevostyanova Anastasia A   Schweimer Kristian K   Mooney Rachel A RA   Landick Robert R   Artsimovitch Irina I   Rösch Paul P  

Cell 20120701 2


NusG homologs regulate transcription and coupled processes in all living organisms. The Escherichia coli (E. coli) two-domain paralogs NusG and RfaH have conformationally identical N-terminal domains (NTDs) but dramatically different carboxy-terminal domains (CTDs), a β barrel in NusG and an α hairpin in RfaH. Both NTDs interact with elongating RNA polymerase (RNAP) to reduce pausing. In NusG, NTD and CTD are completely independent, and NusG-CTD interacts with termination factor Rho or ribosomal  ...[more]

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