4.8 Article

Cohesin's ATPase Activity Couples Cohesin Loading onto DNA with Smc3 Acetylation

期刊

CURRENT BIOLOGY
卷 24, 期 19, 页码 2228-2237

出版社

CELL PRESS
DOI: 10.1016/j.cub.2014.08.011

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资金

  1. European Molecular Biology Organization
  2. Boehringer Ingelheim
  3. Austrian Science Fund (FWF special research program) [SFB F34, Z196-B20]
  4. Austrian Research Promotion Agency (FFG, Laura Bassi Center for Optimized Structural Studies)
  5. Vienna Science and Technology Fund [WWTF LS09-13]
  6. European Community [241548]

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Background: Cohesin mediates sister chromatid cohesion by topologically entrapping sister DNA molecules inside its ring structure. Cohesin is loaded onto DNA by the Scc2/NIPBLScc4/MAU2-loading complex in a manner that depends on the adenosine triphosphatase (ATPase) activity of cohesin's Smcl and Smc3 subunits. Subsequent cohesion establishment during DNA replication depends on Smc3 acetylation by Escol and Esco2 and on recruitment of sororin, which locks cohesin on DNA by inactivating the cohesin release factor Wapl. Results: Human cohesin ATPase mutants associate transiently with DNA in a manner that depends on the loading complex but cannot be stabilized on chromatin by depletion of Wapl. These mutants cannot be acetylated, fail to interact with sororin, and do not mediate cohesion. The absence of Smc3 acetylation in the ATPase mutants is not a consequence of their transient association with DNA but is directly caused by their inability to hydrolyze ATP because acetylation of wild-type cohesin also depends on ATP hydrolysis. Conclusions: Our data indicate that cohesion establishment involves the following steps. First, cohesin transiently associates with DNA in a manner that depends on the loading complex. Subsequently, ATP hydrolysis by cohesin leads to entrapment of DNA and converts Smc3 into a state that can be acetylated. Finally, Smc3 acetylation leads to recruitment of sororin, inhibition of Wapl, and stabilization of cohesin on DNA. Our finding that cohesin's ATPase activity is required for both cohesin loading and Smc3 acetylation raises the possibility that cohesion establishment is directly coupled to the reaction in which cohesin entraps DNA.

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