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古细菌的XPB蛋白是一种具有新型伴侣的单链DNA依赖性ATP酶。

The archaeal XPB protein is a ssDNA-dependent ATPase with a novel partner.

作者信息

Richards Jodi D, Cubeddu Liza, Roberts Jennifer, Liu Huanting, White Malcolm F

机构信息

St. Andrews University, Centre for Biomolecular Sciences, North Haugh, St. Andrews, Fife KY16 9ST, UK.

出版信息

J Mol Biol. 2008 Feb 22;376(3):634-44. doi: 10.1016/j.jmb.2007.12.019. Epub 2007 Dec 15.

Abstract

XPB is a superfamily 2 helicase with a 3'-5' polarity. In eukaryotes, XPB is an integral subunit of the transcription factor TFIIH, which plays a dual role in DNA opening at RNA polymerase II promoters and in establishing the repair bubble around a DNA lesion in nucleotide excision repair. Eukaryotic XPB has only very limited helicase activity in vitro and may function as a DNA-dependent molecular switch to catalyse local distortion of DNA in transcription and repair. Most archaea have one or two homologues of the XPB protein with a presumed role in DNA repair, but only one other subunit of the TFIIH complex, the 5'-3' helicase XPD, has been identified in archaea. Here we report the biochemical characterisation of the two homologous XPB proteins from the crenarchaeon Sulfolobus solfataricus. Although both proteins are single-stranded-DNA-stimulated ATPases, neither displays any helicase activity in vitro, consistent with recent studies of eukaryotic XPB. In almost all archaeal genomes, the xpb gene lies adjacent to a conserved partner gene, and we demonstrate that these two gene products form a physical interaction in vitro. We propose the name Bax1 (Binds archaeal XPB) for this protein, which has a predicted endonuclease domain. XPB and Bax1 may collaborate in processing nucleic acid in an archaeal-specific DNA repair pathway.

摘要

XPB是一种具有3'-5'极性的超家族2解旋酶。在真核生物中,XPB是转录因子TFIIH的一个组成亚基,它在RNA聚合酶II启动子处的DNA解旋以及核苷酸切除修复中DNA损伤周围修复泡的形成过程中发挥双重作用。真核生物的XPB在体外只有非常有限的解旋酶活性,可能作为一种依赖DNA的分子开关,在转录和修复过程中催化DNA的局部扭曲。大多数古菌有一到两个XPB蛋白的同源物,推测在DNA修复中起作用,但在古菌中只鉴定出了TFIIH复合物的另一个亚基,即5'-3'解旋酶XPD。在这里,我们报告了来自嗜热栖热菌的两种同源XPB蛋白的生化特性。尽管这两种蛋白都是单链DNA刺激的ATP酶,但在体外均未显示出任何解旋酶活性,这与最近对真核生物XPB的研究一致。在几乎所有古菌基因组中,xpb基因都与一个保守的伙伴基因相邻,我们证明这两种基因产物在体外形成了物理相互作用。我们为这种具有预测核酸内切酶结构域的蛋白命名为Bax1(结合古菌XPB)。XPB和Bax1可能在古菌特有的DNA修复途径中协同处理核酸。

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