Giannattasio Michele, Sabbioneda Simone, Minuzzo Mario, Plevani Paolo, Muzi-Falconi Marco
Dipartimento di Genetica e di Biologia dei Microrganismi, Università degli Studi di Milano, Via Celoria 26, 20133 Milano, Italy.
J Biol Chem. 2003 Jun 20;278(25):22303-8. doi: 10.1074/jbc.M301260200. Epub 2003 Apr 2.
Rad17-Mec3-Ddc1 forms a proliferating cell nuclear antigen-like complex that is required for the DNA damage response in Saccharomyces cerevisiae and acts at an early step of the signal transduction cascade activated by DNA lesions. We used the mec3-dn allele, which causes a dominant negative checkpoint defect in G1 but not in G2, to test the stability of the complex in vivo and to correlate its assembly and disassembly with the mechanisms controlling checkpoint activation. Under physiological conditions, the mutant complex is formed both in G1 and G2, although the mutant phenotype is detectable only in G1, suggesting that is not the presence of the mutant complex per se to cause a checkpoint defect. Our data indicate that the Rad17-Mec3-Ddc1 complex is very stable, and it takes several hours to replace Mec3 with Mec3-dn within a wild type complex. On the other hand, the mutant complex is rapidly assembled when starting from a condition where the complex is not pre-assembled, indicating that the critical factor for the substitution is the disassembly step rather than complex formation. Moreover, the kinetics of mutant complex assembly, starting from conditions in which the wild type form is present, parallels the kinetics of checkpoint inactivation, suggesting that the complex acts in a stoichiometric way, rather than catalytically.
Rad17-Mec3-Ddc1形成一种增殖细胞核抗原样复合物,这在酿酒酵母的DNA损伤反应中是必需的,并且在由DNA损伤激活的信号转导级联反应的早期步骤中发挥作用。我们使用了mec3-dn等位基因,它在G1期而非G2期导致显性负性检查点缺陷,以测试该复合物在体内的稳定性,并将其组装和解聚与控制检查点激活的机制相关联。在生理条件下,突变复合物在G1期和G2期均形成,尽管突变表型仅在G1期可检测到,这表明并非突变复合物本身的存在导致检查点缺陷。我们的数据表明,Rad17-Mec3-Ddc1复合物非常稳定,在野生型复合物中用Mec3-dn替代Mec3需要几个小时。另一方面,当从复合物未预先组装的条件开始时,突变复合物会迅速组装,这表明替代的关键因素是解聚步骤而非复合物形成。此外,从野生型形式存在的条件开始,突变复合物组装的动力学与检查点失活的动力学相似,这表明该复合物以化学计量方式起作用,而非催化方式。