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The Fanconi anemia protein interaction network: casting a wide net.

机译:Fanconi贫血蛋白相互作用网络:广泛传播。

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摘要

It has long been hypothesized that a defect in the repair of damaged DNA is central to the etiology of Fanconi anemia (FA). Indeed, an increased sensitivity of FA patient-derived cells to the lethal effects of various forms of DNA damaging agents was described over three decades ago [A.J. Fornace, Jr., J.B. Little, R.R. Weichselbaum, DNA repair in a Fanconi's anemia fibroblast cell strain, Biochim. Biophys. Acta 561 (1979) 99-109; Y. Fujiwara, M. Tatsumi, Repair of mitomycin C damage to DNA in mammalian cells and its impairment in Fanconi's anemia cells, Biochem. Biophys. Res. Commun. 66 (1975) 592-598; A.J. Rainbow, M. Howes, Defective repair of ultraviolet- and gamma-ray-damaged DNA in Fanconi's anaemia, Int. J. Radiat. Biol. Relat. Stud. Phys. Chem. Med. 31 (1977) 191-195]. Furthermore, the cytological hallmark of FA, the DNA crosslink-induced radial chromosome formation, exemplifies an innate impairment in the repair of these particularly cytotoxic DNA lesions [A.D. Auerbach, Fanconi anemia diagnosis and the diepoxybutane (DEB) test, Exp. Hematol. 21 (1993) 731-733]. Precisely defining the collective role of the FA proteins in DNA repair, however, continues to be one of the most enigmatic and challenging questions in the FA field. The first six identified FA proteins (A, C, E, F, G, and D2) harbored no recognizable enzymatic features, precluding association with a specific metabolic process. Consequently, our knowledge of the role of the FA proteins in the DNA damage response has been gleaned primarily through biochemical association studies with non-FA proteins. Here, we provide a chronological discourse of the major FA protein interaction network discoveries, with particular emphasis on the DNA damage response, that have defined our current understanding of the molecular basis of FA.
机译:长期以来一直认为,受损DNA修复中的缺陷是Fanconi贫血(FA)病因的核心。的确,在三十多年前,已经描述了FA患者来源的细胞对各种形式的DNA损伤剂的致死作用的敏感性增加。 Fornace,Jr.,J.B。Little,R.R。Weichselbaum,范可尼贫血成纤维细胞细胞株Biochim中的DNA修复。生物物理学。 561(1979)99-109; Y. Fujiwara,M。Tatsumi,《丝裂霉素C对哺乳动物细胞DNA的损伤及其在Fanconi贫血细胞中的损伤的修复》,Biochem。生物物理学。 Res。社区66(1975)592-598; A.J. Rainbow,M. Howes,Fanconi贫血中紫外线和伽马射线损坏的DNA的缺陷修复。 J. Radiat。生物学相关。梭哈物理化学中31(1977)191-195]。此外,FA的细胞学特征是DNA交联诱导的放射状染色体形成,是这些特别是细胞毒性DNA损伤修复中的先天性损伤[A.D. Auerbach,Fanconi贫血诊断和二环氧丁烷(DEB)测试,实验。血红素21(1993)731-733]。精确定义FA蛋白在DNA修复中的集体作用,仍然是FA领域中最神秘和最具挑战性的问题之一。前六个已识别的FA蛋白(A,C,E,F,G和D2)没有可识别的酶学特征,从而排除了与特定代谢过程的关联。因此,我们对FA蛋白质在DNA损伤反应中的作用的认识主要是通过与非FA蛋白质的生化关联研究获得的。在这里,我们提供了主要FA蛋白相互作用网络发现的时间顺序论述,尤其着重于DNA损伤反应,这些发现定义了我们对FA分子基础的当前理解。

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