Meetei Amom Ruhikanta, Medhurst Annette L, Ling Chen, Xue Yutong, Singh Thiyam Ramsing, Bier Patrick, Steltenpool Jurgen, Stone Stacie, Dokal Inderjeet, Mathew Christopher G, Hoatlin Maureen, Joenje Hans, de Winter Johan P, Wang Weidong
Division of Experimental Hematology, Cincinnati Children's Hospital Research Foundation and University of Cincinnati College of Medicine, 3333 Burnet Avenue, Cincinnati, Ohio 45229, USA.
Nat Genet. 2005 Sep;37(9):958-63. doi: 10.1038/ng1626. Epub 2005 Aug 21.
Fanconi anemia is a genetic disease characterized by genomic instability and cancer predisposition. Nine genes involved in Fanconi anemia have been identified; their products participate in a DNA damage-response network involving BRCA1 and BRCA2 (refs. 2,3). We previously purified a Fanconi anemia core complex containing the FANCL ubiquitin ligase and six other Fanconi anemia-associated proteins. Each protein in this complex is essential for monoubiquitination of FANCD2, a key reaction in the Fanconi anemia DNA damage-response pathway. Here we show that another component of this complex, FAAP250, is mutant in individuals with Fanconi anemia of a new complementation group (FA-M). FAAP250 or FANCM has sequence similarity to known DNA-repair proteins, including archaeal Hef, yeast MPH1 and human ERCC4 or XPF. FANCM can dissociate DNA triplex, possibly owing to its ability to translocate on duplex DNA. FANCM is essential for monoubiquitination of FANCD2 and becomes hyperphosphorylated in response to DNA damage. Our data suggest an evolutionary link between Fanconi anemia-associated proteins and DNA repair; FANCM may act as an engine that translocates the Fanconi anemia core complex along DNA.
范可尼贫血是一种以基因组不稳定和癌症易感性为特征的遗传疾病。已鉴定出9个与范可尼贫血相关的基因;它们的产物参与了一个涉及BRCA1和BRCA2的DNA损伤反应网络(参考文献2,3)。我们之前纯化了一个范可尼贫血核心复合物,其中包含FANCL泛素连接酶和其他6种与范可尼贫血相关的蛋白质。该复合物中的每种蛋白质对于范可尼贫血DNA损伤反应途径中的关键反应——FANCD2的单泛素化都是必不可少的。在这里,我们表明该复合物的另一个成分FAAP250在一个新的互补组(FA-M)的范可尼贫血患者中发生了突变。FAAP250或FANCM与已知的DNA修复蛋白具有序列相似性,包括古细菌Hef、酵母MPH1以及人类ERCC4或XPF。FANCM可以解开DNA三链体,这可能归因于其在双链DNA上移位的能力。FANCM对于FANCD2的单泛素化至关重要,并在DNA损伤时发生过度磷酸化。我们的数据表明范可尼贫血相关蛋白与DNA修复之间存在进化联系;FANCM可能充当了一个沿着DNA移动范可尼贫血核心复合物的引擎。