Replisome-cohesin interactions provided by the Tof1-Csm3 and Mrc1 cohesion establishment factors

Author:

Shrestha Sudikchya,Minamino Masashi,Chen Zhuo A.,Bouchoux Céline,Rappsilber Juri,Uhlmann Frank

Abstract

AbstractThe chromosomal cohesin complex establishes sister chromatid cohesion during S phase, which forms the basis for faithful segregation of DNA replication products during cell divisions. Cohesion establishment is defective in the absence of either of three non-essential Saccharomyces cerevisiae replication fork components Tof1-Csm3 and Mrc1. Here, we investigate how these conserved factors contribute to cohesion establishment. Tof1-Csm3 and Mrc1 serve known roles during DNA replication, including replication checkpoint signaling, securing replication fork speed, as well as recruiting topoisomerase I and the histone chaperone FACT. By modulating each of these functions independently, we rule out that one of these known replication roles explains the contribution of Tof1-Csm3 and Mrc1 to cohesion establishment. Instead, using purified components, we reveal direct and multipronged protein interactions of Tof1-Csm3 and Mrc1 with the cohesin complex. Our findings open the possibility that a series of physical interactions between replication fork components and cohesin facilitate successful establishment of sister chromatid cohesion during DNA replication.

Funder

The Francis Crick Institute

Publisher

Springer Science and Business Media LLC

Subject

Genetics (clinical),Genetics

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