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多种范可尼贫血基因产物在DNA损伤相关泛素化中的特定作用。

A defined role for multiple Fanconi anemia gene products in DNA-damage-associated ubiquitination.

作者信息

Tan Winnie, Deans Andrew J

机构信息

Genome Stability Unit, St. Vincent's Institute of Medical Research, Fitzroy, Victoria, Australia; Department of Medicine, St. Vincent's Health, University of Melbourne, Fitzroy, Victoria, Australia.

Genome Stability Unit, St. Vincent's Institute of Medical Research, Fitzroy, Victoria, Australia; Department of Medicine, St. Vincent's Health, University of Melbourne, Fitzroy, Victoria, Australia.

出版信息

Exp Hematol. 2017 Jun;50:27-32. doi: 10.1016/j.exphem.2017.03.001. Epub 2017 Mar 16.

Abstract

Fanconi anemia (FA) is an inherited blood disorder that causes bone marrow failure and high predisposition to cancers. The FA pathway guards the cell's genome stability by orchestrating the repair of interstrand cross-linking during the S phase of the cell cycle, preventing the chromosomal instability that is a key event in bone marrow failure syndrome. Central to the FA pathway is loss of monoubiquitinated forms of the Fanconi proteins FANCI and FANCD2, a process that is normally mediated by a "core complex" of seven other Fanconi proteins. Each protein, when mutated, can cause FA. The FA core-complex-catalyzed reaction is critical for signaling DNA cross-link damage such as that induced by chemotherapies. Here, we present a perspective on the current understanding of FANCI and FANCD2 monoubiquitination-mediated DNA repair. Our recent biochemical reconstitution of the monoubiquitination (and deubiquitination) reactions creates a paradigm for understanding FA. Further biochemical analysis will create new opportunities to address the leukemic phenotype of FA patients.

摘要

范可尼贫血(FA)是一种遗传性血液疾病,会导致骨髓衰竭并极易患癌症。FA途径通过在细胞周期的S期协调链间交联的修复来保护细胞的基因组稳定性,防止染色体不稳定,而染色体不稳定是骨髓衰竭综合征的关键事件。FA途径的核心是范可尼蛋白FANCI和FANCD2的单泛素化形式缺失,这一过程通常由其他七种范可尼蛋白的“核心复合物”介导。每种蛋白质发生突变时都可能导致FA。FA核心复合物催化的反应对于诸如化疗诱导的DNA交联损伤信号传导至关重要。在此,我们对目前对FANCI和FANCD2单泛素化介导的DNA修复的理解进行了阐述。我们最近对单泛素化(和去泛素化)反应进行的生化重建为理解FA创造了一个范例。进一步的生化分析将为解决FA患者的白血病表型创造新的机会。

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