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诱变型UmuD'C蛋白复合物对RecA核蛋白功能的调控

Modulation of RecA nucleoprotein function by the mutagenic UmuD'C protein complex.

作者信息

Rehrauer W M, Bruck I, Woodgate R, Goodman M F, Kowalczykowski S C

机构信息

Division of Biological Sciences, Sections of Microbiology and of Molecular and Cellular Biology, University of California, Davis, California 95616-8665, USA.

出版信息

J Biol Chem. 1998 Dec 4;273(49):32384-7. doi: 10.1074/jbc.273.49.32384.

Abstract

The RecA, UmuC, and UmuD' proteins are essential for error-prone, replicative bypass of DNA lesions. Normally, RecA protein mediates homologous pairing of DNA. We show that purified Umu(D')2C blocks this recombination function. Biosensor measurements establish that the mutagenic complex binds to the RecA nucleoprotein filament with a stoichiometry of one Umu(D')2C complex for every two RecA monomers. Furthermore, Umu(D')2C competitively inhibits LexA repressor cleavage but not ATPase activity, implying that Umu(D')2C binds in or proximal to the helical groove of the RecA nucleoprotein filament. This binding reduces joint molecule formation and even more severely impedes DNA heteroduplex formation by RecA protein, ultimately blocking all DNA pairing activity and thereby abridging participation in recombination function. Thus, Umu(D')2C restricts the activities of the RecA nucleoprotein filament and presumably, in this manner, recruits it for mutagenic repair function. This modulation by Umu(D')2C is envisioned as a key event in the transition from a normal mode of genomic maintenance by "error-free" recombinational repair, to one of "error-prone" DNA replication.

摘要

RecA、UmuC和UmuD'蛋白对于DNA损伤的易错复制性跨越至关重要。正常情况下,RecA蛋白介导DNA的同源配对。我们发现纯化的Umu(D')2C会阻断这种重组功能。生物传感器测量结果表明,诱变复合物与RecA核蛋白丝结合,化学计量比为每两个RecA单体对应一个Umu(D')2C复合物。此外,Umu(D')2C竞争性抑制LexA阻遏物的切割,但不抑制ATP酶活性,这意味着Umu(D')2C结合在RecA核蛋白丝的螺旋沟内或其附近。这种结合减少了联合分子的形成,甚至更严重地阻碍了RecA蛋白介导的DNA异源双链体的形成,最终阻断了所有DNA配对活性,从而减少了其参与重组功能的机会。因此,Umu(D')2C限制了RecA核蛋白丝的活性,并且大概是以这种方式将其招募用于诱变修复功能。Umu(D')2C的这种调节作用被认为是从通过“无差错”重组修复进行基因组维持的正常模式向“易错”DNA复制模式转变过程中的一个关键事件。

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