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Structural and dynamic studies of the transcription factor ERG reveal DNA binding is allosterically autoinhibited.


ABSTRACT: The Ets-Related Gene (ERG) belongs to the Ets family of transcription factors and is critically important for maintenance of the hematopoietic stem cell population. A chromosomal translocation observed in the majority of human prostate cancers leads to the aberrant overexpression of ERG. We have identified regions flanking the ERG Ets domain responsible for autoinhibition of DNA binding and solved crystal structures of uninhibited, autoinhibited, and DNA-bound ERG. NMR-based measurements of backbone dynamics show that uninhibited ERG undergoes substantial dynamics on the millisecond-to-microsecond timescale but autoinhibited and DNA-bound ERG do not. We propose a mechanism whereby the allosteric basis of ERG autoinhibition is mediated predominantly by the regulation of Ets-domain dynamics with only modest structural changes.

SUBMITTER: Regan MC 

PROVIDER: S-EPMC3746864 | biostudies-literature | 2013 Aug

REPOSITORIES: biostudies-literature

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Structural and dynamic studies of the transcription factor ERG reveal DNA binding is allosterically autoinhibited.

Regan Michael C MC   Horanyi Peter S PS   Pryor Edward E EE   Sarver Jessica L JL   Cafiso David S DS   Bushweller John H JH  

Proceedings of the National Academy of Sciences of the United States of America 20130729 33


The Ets-Related Gene (ERG) belongs to the Ets family of transcription factors and is critically important for maintenance of the hematopoietic stem cell population. A chromosomal translocation observed in the majority of human prostate cancers leads to the aberrant overexpression of ERG. We have identified regions flanking the ERG Ets domain responsible for autoinhibition of DNA binding and solved crystal structures of uninhibited, autoinhibited, and DNA-bound ERG. NMR-based measurements of back  ...[more]

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