Istituto di Biochimica e Biologia Cellulare, Consiglio Nazionale delle Ricerche, Via P. Castellino 111, 80131 Naples, Italy.
Dipartimento di Scienze e Tecnologie Ambientali Biologiche e Farmaceutiche, Università degli Studi della Campania Luigi Vanvitelli, Via Vivaldi 43, 81100 Caserta, Italy.
Int J Mol Sci. 2021 Mar 10;22(6):2810. doi: 10.3390/ijms22062810.
Several lines of evidence suggest the existence in the eukaryotic cells of a tight, yet largely unexplored, connection between DNA replication and sister chromatid cohesion. Tethering of newly duplicated chromatids is mediated by cohesin, an evolutionarily conserved hetero-tetrameric protein complex that has a ring-like structure and is believed to encircle DNA. Cohesin is loaded onto chromatin in telophase/G1 and converted into a cohesive state during the subsequent S phase, a process known as cohesion establishment. Many studies have revealed that down-regulation of a number of DNA replication factors gives rise to chromosomal cohesion defects, suggesting that they play critical roles in cohesion establishment. Conversely, loss of cohesin subunits (and/or regulators) has been found to alter DNA replication fork dynamics. A critical step of the cohesion establishment process consists in cohesin acetylation, a modification accomplished by dedicated acetyltransferases that operate at the replication forks. Defects in cohesion establishment give rise to chromosome mis-segregation and aneuploidy, phenotypes frequently observed in pre-cancerous and cancerous cells. Herein, we will review our present knowledge of the molecular mechanisms underlying the functional link between DNA replication and cohesion establishment, a phenomenon that is unique to the eukaryotic organisms.
有几条线索表明,在真核细胞中,DNA 复制和姐妹染色单体黏合之间存在着一种紧密但尚未被充分探索的联系。新复制的染色单体的连接是由黏合蛋白介导的,黏合蛋白是一种进化上保守的异四聚体蛋白复合物,具有环状结构,被认为环绕着 DNA。黏合蛋白在末期/ G1 期被加载到染色质上,并在随后的 S 期转化为黏合状态,这一过程称为黏合建立。许多研究表明,下调许多 DNA 复制因子会导致染色体黏合缺陷,这表明它们在黏合建立中发挥着关键作用。相反,黏合蛋白亚基(和/或调节剂)的缺失已被发现会改变 DNA 复制叉的动力学。黏合建立过程的一个关键步骤是黏合蛋白乙酰化,这是由专门在复制叉上起作用的乙酰转移酶完成的修饰。黏合建立缺陷会导致染色体错误分离和非整倍体,这是在癌前和癌细胞中经常观察到的表型。在此,我们将回顾我们目前对 DNA 复制和黏合建立之间功能联系的分子机制的了解,这一现象是真核生物所特有的。