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Psakhye, I.

Publications and source records attributed to Psakhye, I..

2 recordsLinked to original sources

PCNA recruits cohesin loader Scc2/NIPBL to ensure sister chromatid cohesion

Sister chromatid cohesion is essential for faithful chromosome segregation and genome duplication during cell division. Failure to establish cohesion during S phase by the ring-shaped multiprotein complex cohesin leads to genomic instability1-4. Replisome-associated proteins are required to generate cohesion by two independent pathways5. One mediates conversion of cohesins bound to unreplicated DNA ahead of replication forks into cohesive entities behind them, while the second promotes cohesin de novo loading onto newly-replicated DNAs6. The latter process depends on the cohesin loader Scc2/NIPBL and the alternative PCNA loader CTF18-RFC. However, the precise mechanism of de novo cohesin loading during replication is unknown. Here we show that PCNA physically recruits yeast cohesin loader Scc2 via its C-terminal PCNA-interacting protein motif. Binding to PCNA is crucial, as scc2-pip mutant deficient in Scc2-PCNA interaction is defective in cohesion when combined with replisome mutants of the cohesin conversion pathway. Moreover, scc2-pip mutant becomes inviable without its partner Scc4/MAU2 that localizes cohesin loader to centromeres. Importantly, the role of NIPBL recruitment to PCNA for cohesion generation is conserved in vertebrate cells. Our results demonstrate that PCNA, the maestro of replication-linked functions, is also crucially involved in the cohesion establishment through de novo cohesin loading onto replicated DNA.

cell biology↗

SMC Complexes Are Guarded by the SUMO Protease Ulp2 Against SUMO-Chain-Mediated Turnover

Structural maintenance of chromosomes (SMC) complexes, cohesin, condensin and Smc5/6, are essential for viability and participate in multiple processes, including sister chromatid cohesion, chromosome condensation, and DNA repair. Here we show that SUMO chains target all three SMC complexes and are antagonized by the SUMO protease Ulp2 to prevent their turnover. We uncover that the essential role of the cohesin-associated subunit Pds5 is to counteract SUMO chains jointly with Ulp2. Importantly, fusion of Ulp2 to kleisin Scc1 supports viability of PDS5 null cells and protects cohesin from proteasomal degradation mediated by the SUMO-targeted ubiquitin ligase Slx5/Slx8. The lethality of PDS5 deleted cells can also be bypassed by simultaneous loss of the PCNA unloader, Elg1, and the cohesin releaser, Wpl1, but only when Ulp2 is functional. Condensin and Smc5/6 complex are similarly guarded by Ulp2 against unscheduled SUMO-chain assembly, which we propose to time the availability of SMC complexes on chromatin.

cell biology↗