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Conserved XPB core structure and motifs for DNA unwinding: Implications for pathway selection of transcription or excision repair

机译:保守的XPB核心结构和DNA展开基序:对转录或切除修复的途径选择的意义

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摘要

The human xeroderma pigmentosum group B (XPB) helicase is essential for transcription, nucleotide excision repair, and TFIIH functional assembly. Here, we determined crystal structures of an Archaeoglobus fulgidus XPB homolog (AfXPB) that characterize two RecA-like XPB helicase domains and discover a DNA damage recognition domain (DRD), a unique RED motif, a flexible thumb motif (ThM), and implied conformational changes within a conserved functional core. RED motif mutations dramatically reduce helicase activity, and the DRD and ThM, which flank the RED motif, appear structurally as well as functionally analogous to the MutS mismatch recognition and DNA polymerase thumb domains. Substrate specificity is altered by DNA damage, such that AfXPB unwinds dsDNA with 3'extensions, but not blunt-ended dsDNA, unless it contains a lesion, as shown for CPD or (6-4) photoproducts. Together, these results provide an unexpected mechanism of DNA unwinding with implications for XPB damage verification in nucleotide excision repair.
机译:人干性皮肤色素干素B组(XPB)解旋酶对于转录,核苷酸切除修复和TFIIH功能组装至关重要。在这里,我们确定了古细菌古菌XPB同源物(AfXPB)的晶体结构,该结构表征了两个类似RecA的XPB解旋酶结构域,并发现了DNA损伤识别域(DRD),独特的RED基序,柔性拇指基序(ThM)和隐含保守功能核心内的构象变化。 RED基序突变显着降低了解旋酶的活性,位于RED基序旁的DRD和ThM在结构和功能上均类似于MutS错配识别和DNA聚合酶拇指结构域。底物特异性会因DNA损伤而改变,例如AfXPB可以解开具有3'延伸的dsDNA,但不会钝化dsDNA,除非它含有病变,如CPD或(6-4)光产品所示。总之,这些结果提供了DNA释放的意外机制,对核苷酸切除修复中的XPB损伤验证产生了影响。

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