Bylund Göran O, Burgers Peter M J
Department of Biochemistry, Washington University School of Medicine, 660 S. Euclid, St. Louis, Missouri 63110, USA.
Mol Cell Biol. 2005 Jul;25(13):5445-55. doi: 10.1128/MCB.25.13.5445-5455.2005.
The replication clamp PCNA is loaded around DNA by replication factor C (RFC) and functions in DNA replication and repair. Regulated unloading of PCNA during the progression and termination of DNA replication may require additional factors. Here we show that a Saccharomyces cerevisiae complex required for the establishment of sister chromatid cohesion functions as an efficient unloader of PCNA. Unloading requires ATP hydrolysis. This seven-subunit Ctf18-RFC complex consists of the four small subunits of RFC, together with Ctf18, Dcc1, and Ctf8. Ctf18-RFC was also a weak loader of PCNA onto naked template-primer DNA. However, when the single-stranded DNA template was coated by the yeast single-stranded DNA binding protein replication protein A (RPA) but not by a mutant form of RPA or a heterologous single-stranded DNA binding protein, both binding of Ctf18-RFC to substrate DNA and loading of PCNA were strongly inhibited, and unloading predominated. Neither yeast RFC itself nor two other related clamp loaders, containing either Rad24 or Elg1, catalyzed significant unloading of PCNA. The Dcc1 and Ctf8 subunits of Ctf18-RFC, while required for establishing sister chromatid cohesion in vivo, did not function specifically in PCNA unloading in vitro, thereby separating the functionality of the Ctf18-RFC complex into two distinct paths.
复制钳增殖细胞核抗原(PCNA)由复制因子C(RFC)加载到DNA周围,并在DNA复制和修复中发挥作用。在DNA复制的进行和终止过程中,PCNA的有序卸载可能需要其他因子。在此,我们表明酿酒酵母中建立姐妹染色单体黏连所需的一个复合物可作为PCNA的高效卸载因子。卸载需要ATP水解。这个由七个亚基组成的Ctf18-RFC复合物由RFC的四个小亚基以及Ctf18、Dcc1和Ctf8组成。Ctf18-RFC也是将PCNA加载到裸露的模板-引物DNA上的较弱加载因子。然而,当单链DNA模板被酵母单链DNA结合蛋白复制蛋白A(RPA)包被时,而非被RPA的突变形式或异源单链DNA结合蛋白包被时,Ctf18-RFC与底物DNA的结合以及PCNA的加载均受到强烈抑制,且卸载占主导。酵母RFC自身以及另外两个分别含有Rad24或Elg1的相关钳式加载因子都不会催化PCNA的显著卸载。Ctf18-RFC的Dcc1和Ctf8亚基虽然在体内建立姐妹染色单体黏连时是必需的,但在体外PCNA卸载中并无特异性作用,从而将Ctf18-RFC复合物的功能分为两条不同途径。