损伤诱导诱变:突变蛋白Umu家族活性的最新见解。

Cancer surveys Pub Date : 1996-01-01
R Woodgate, A S Levine
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引用次数: 0

摘要

尽管我们取得了进展,但关于损伤诱导诱变的分子机制仍有待阐明。虽然已经确定了导致突变体形成的复杂蛋白质相互作用的某些方面,但pol III和UmuD'C-RecA蛋白质之间相互作用的确切性质仍然完全是推测性的。进一步的进展将取决于完全重建的体外无细胞病变旁路系统的发展,以及整个突变体的结构建模,然后我们才能了解如何实现容易出错的翻译DNA合成。即使大肠杆菌突变体的结构同源体在高等生物中不存在,但似乎很有可能确实会发现功能同源的致突变途径。在动物细胞中这样一个活跃的诱变过程肯定会对我们理解遗传不稳定的机制,以及与DNA突变形成相关的人类癌变和其他病理具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Damage inducible mutagenesis: recent insights into the activities of the Umu family of mutagenesis proteins.

Despite our advances, much remains to be elucidated about the molecular mechanisms of damage inducible mutagenesis. Although some aspects of the intricate protein interactions that lead to the formation of the mutasome have been determined, the precise nature of the interactions between pol III and the UmuD'C-RecA proteins remains entirely speculative. Further progress will depend on the development of a completely reconstituted, cell free lesion bypass system in vitro, as well as structural modelling of the mutasome in its entirety before we understand how error prone translesion DNA synthesis is achieved. Even if a structural homologue of the Escherichia coli mutasome does not exist in higher organisms, it seems quite likely that a functionally homologous mutagenic pathway will indeed be found. Such an active mutagenic process in animal cells would certainly have significant implications for our understanding of the mechanisms of genetic instability, as well as of human carcinogenesis and other pathologies associated with the formation of mutations in DNA.

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