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Structure of the initiation-competent RNA polymerase I and its implication for transcription.


ABSTRACT: Eukaryotic RNA polymerase I (Pol I) is specialized in rRNA gene transcription synthesizing up to 60% of cellular RNA. High level rRNA production relies on efficient binding of initiation factors to the rRNA gene promoter and recruitment of Pol I complexes containing initiation factor Rrn3. Here, we determine the cryo-EM structure of the Pol I-Rrn3 complex at 7.5?Å resolution, and compare it with Rrn3-free monomeric and dimeric Pol I. We observe that Rrn3 contacts the Pol I A43/A14 stalk and subunits A190 and AC40, that association re-organizes the Rrn3 interaction interface, thereby preventing Pol I dimerization; and Rrn3-bound and monomeric Pol I differ from the dimeric enzyme in cleft opening, and localization of the A12.2 C-terminus in the active centre. Our findings thus support a dual role for Rrn3 in transcription initiation to stabilize a monomeric initiation competent Pol I and to drive pre-initiation complex formation.

SUBMITTER: Pilsl M 

PROVIDER: S-EPMC4947174 | biostudies-literature | 2016 Jul

REPOSITORIES: biostudies-literature

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Structure of the initiation-competent RNA polymerase I and its implication for transcription.

Pilsl Michael M   Crucifix Corinne C   Papai Gabor G   Krupp Ferdinand F   Steinbauer Robert R   Griesenbeck Joachim J   Milkereit Philipp P   Tschochner Herbert H   Schultz Patrick P  

Nature communications 20160715


Eukaryotic RNA polymerase I (Pol I) is specialized in rRNA gene transcription synthesizing up to 60% of cellular RNA. High level rRNA production relies on efficient binding of initiation factors to the rRNA gene promoter and recruitment of Pol I complexes containing initiation factor Rrn3. Here, we determine the cryo-EM structure of the Pol I-Rrn3 complex at 7.5 Å resolution, and compare it with Rrn3-free monomeric and dimeric Pol I. We observe that Rrn3 contacts the Pol I A43/A14 stalk and subu  ...[more]

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