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范可尼贫血通路调控交联 DNA 部位的切口。

The Fanconi anaemia pathway orchestrates incisions at sites of crosslinked DNA.

机构信息

MRC Laboratory of Molecular Biology, Division of Protein and Nucleic Acid Chemistry, Cambridge, UK.

出版信息

J Pathol. 2012 Jan;226(2):326-37. doi: 10.1002/path.3002. Epub 2011 Oct 25.

Abstract

Fanconi anaemia (FA) is a rare, autosomal recessive, genetically complex, DNA repair deficiency syndrome in man. Patients with FA exhibit a heterogeneous spectrum of clinical features. The most significant and consistent phenotypic characteristics are stem cell loss, causing progressive bone marrow failure and sterility, diverse developmental abnormalities and a profound predisposition to neoplasia. To date, 15 genes have been identified, biallelic disruption of any one of which results in this clinically defined syndrome. It is now apparent that all 15 gene products act in a common process to maintain genome stability. At the molecular level, a fundamental defect in DNA repair underlies this complex phenotype. Cells derived from FA patients spontaneously accumulate broken chromosomes and exhibit a marked sensitivity to DNA-damaging chemotherapeutic agents. Despite complementation analysis defining many components of the FA DNA repair pathway, no direct link to DNA metabolism was established until recently. First, it is now evident that the FA pathway is required to make incisions at the site of damaged DNA. Second, a specific component of the FA pathway has been identified that regulates nucleases previously implicated in DNA interstrand crosslink repair. Taken together, these data provide genetic and biochemical evidence that the FA pathway is a bona fide DNA repair pathway that directly mediates DNA repair transactions, thereby elucidating the specific molecular defect in human Fanconi anaemia.

摘要

范可尼贫血(FA)是一种罕见的常染色体隐性遗传、遗传复杂的 DNA 修复缺陷综合征。FA 患者表现出异质的临床特征谱。最显著和一致的表型特征是干细胞丢失,导致进行性骨髓衰竭和不育、多种发育异常以及对肿瘤的深刻易感性。迄今为止,已经鉴定出 15 个基因,其中任何一个基因的双等位基因破坏都会导致这种临床定义的综合征。现在很明显,所有 15 个基因产物都在一个共同的过程中发挥作用,以维持基因组的稳定性。在分子水平上,DNA 修复的基本缺陷是这种复杂表型的基础。FA 患者来源的细胞自发地积累断裂的染色体,并对 DNA 损伤化疗药物表现出明显的敏感性。尽管互补分析定义了 FA DNA 修复途径的许多成分,但直到最近才建立了与 DNA 代谢的直接联系。首先,现在很明显 FA 途径是在受损 DNA 部位进行切口所必需的。其次,已经鉴定出 FA 途径的一个特定成分,它调节先前涉及 DNA 链间交联修复的核酶。总之,这些数据提供了遗传和生化证据,表明 FA 途径是一种真正的 DNA 修复途径,它直接介导 DNA 修复交易,从而阐明了人类范可尼贫血的特定分子缺陷。

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