bioRxiv · 10.1101/179788
A role for the Smc3 hinge domain in the maintenance of sister chromatid cohesion
Abstract
Cohesin is a conserved protein complex required for sister chromatid cohesion, chromosome condensation, DNA damage repair, and regulation of transcription. Although cohesin functions to tether DNA duplexes, the contribution of its individual domains to this activity remains poorly understood. We interrogated the Smc3p subunit of cohesin by random insertion mutagenesis. Analysis of a mutant in the Smc3p hinge revealed an unexpected role for this domain in cohesion maintenance and condensation. Further investigation revealed that the Smc3p hinge functions at a step following cohesins stable binding to chromosomes and independently of Smc3ps regulation by the Eco1p acetyltransferase. Hinge mutant phenotypes resemble loss of Pds5p, which binds opposite the hinge near Smc3ps head domain. We propose that a specific conformation of the Smc3p hinge and Pds5p cooperate to promote cohesion maintenance and condensation.
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Robison, B., Guacci, V., Koshland, D.. 2017-08-23. A role for the Smc3 hinge domain in the maintenance of sister chromatid cohesion. https://doi.org/10.1101/179788
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