Cell Cycle and Cancer Biology Program, Oklahoma Medical Research Foundation, Oklahoma City, OK, 73104, USA.
Department of Cell Biology, University of Oklahoma Health Sciences Center, Oklahoma City, OK, 73104, USA.
Chromosome Res. 2023 Jan 28;31(1):6. doi: 10.1007/s10577-023-09711-1.
Cohesion between sister chromatids by the cohesin protein complex ensures accurate chromosome segregation and enables recombinational DNA repair. Sister chromatid cohesion is promoted by acetylation of the SMC3 subunit of cohesin by the ESCO2 acetyltransferase, inhibiting cohesin release from chromatin. The interaction of ESCO2 with the DNA replication machinery, in part through PCNA-interacting protein (PIP) motifs in ESCO2, is required for full cohesion establishment. Recent reports have suggested that Cul4-dependent degradation regulates the level of ESCO2 protein following replication. To follow up on these observations, we have characterized ESCO2 stability in Xenopus egg extracts, a cell-free system that recapitulates cohesion establishment in vitro. We found that ESCO2 was stable during DNA replication in this system. Indeed, further challenging the system by inducing DNA damage signaling or increasing the number of nuclei undergoing DNA replication had no significant impact on the stability of ESCO2. In transgenic somatic cell lines, we also did not see evidence of GFP-ESCO2 degradation during S phase of the cell cycle using both flow cytometry and live-cell imaging. We conclude that ESCO2 is stable during DNA replication in both embryonic and somatic cells.
姐妹染色单体之间的黏合通过黏合蛋白复合物来保证,这确保了染色体的正确分离,并使重组 DNA 修复成为可能。黏合蛋白复合物的 SMC3 亚基的乙酰化由 ESCO2 乙酰转移酶促进,从而抑制了黏合蛋白从染色质上的释放。ESCO2 与 DNA 复制机制的相互作用,部分是通过 ESCO2 中的 PCNA 相互作用蛋白 (PIP) 基序来实现的,这对于完全建立黏合是必需的。最近的报告表明,Cul4 依赖性降解在复制后调节 ESCO2 蛋白的水平。为了跟进这些观察结果,我们在爪蟾卵提取物中对 ESCO2 的稳定性进行了表征,这是一种体外复制黏合的无细胞系统。我们发现,在该系统中,ESCO2 在 DNA 复制期间是稳定的。事实上,通过诱导 DNA 损伤信号或增加经历 DNA 复制的核的数量来进一步挑战该系统,对 ESCO2 的稳定性没有显著影响。在转基因体细胞核细胞系中,我们也没有在细胞周期的 S 期看到 GFP-ESCO2 降解的证据,无论是使用流式细胞术还是活细胞成像。我们的结论是,ESCO2 在胚胎和体细胞核内的 DNA 复制过程中是稳定的。