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人类核苷酸切除修复蛋白XPA:对包含ERCC1结合区域和最小DNA结合结构域(M59-F219)的XPA片段的核磁共振光谱研究。

Human nucleotide excision repair protein XPA: NMR spectroscopic studies of an XPA fragment containing the ERCC1-binding region and the minimal DNA-binding domain (M59-F219).

作者信息

Buchko G W, Isern N G, Spicer L D, Kennedy M A

机构信息

Environmental Molecular Sciences Laboratory, Pacific Northwest National Laboratory, Richland, WA 99352, USA.

出版信息

Mutat Res. 2001 Jun 5;486(1):1-10. doi: 10.1016/s0921-8777(01)00072-6.

Abstract

XPA is a central protein component of nucleotide excision repair (NER), a ubiquitous, multi-component cellular pathway responsible for the removal and repair of many structurally distinct DNA lesions from the eukaryotic genome. The solution structure of the minimal DNA-binding domain of XPA (XPA-MBD: M98-F219) has recently been determined and chemical shift mapping experiments with 15N-labeled XPA-MBD show that XPA binds DNA along a basic surface located in the C-terminal loop-rich subdomain. Here, XPA-DNA interactions are further characterized using an XPA fragment containing the minimal DNA-binding domain plus the ERCC1-binding region (XPA-EM: M59-F219). The 15N/1H HSQC spectrum of XPA-EM closely maps onto the 15N/1H HSQC spectrum of XPA-MBD, suggesting the DNA-binding domain is intact in the larger XPA fragment. Such a conclusion is corroborated by chemical shift mapping experiments of XPA-EM with a single strand DNA oligomer, dCCAATAACC (d9), that show the same set of 15N/1H HSQC cross peaks are effected by the addition of DNA. However, relative to DNA-free XPA-MBD, the 15N/1H HSQC cross peaks of many of the basic residues in the loop-rich subdomain of DNA-free XPA-EM are less intense, or gone altogether, suggesting the acidic ERRC1-binding region of XPA-EM may associate transiently with the basic DNA-binding surface. While the DNA-binding domain in XPA-EM is structured and functional, 15N-edited NOESY spectra of XPA-EM indicate that the acidic ERRC1-binding region is unstructured. If the structural features observed for XPA-EM persist in XPA, transient intramolecular association of the ERCC1-binding domain with the DNA-binding region may play a role in the sequential assembly of the NER components.

摘要

XPA是核苷酸切除修复(NER)的核心蛋白成分,NER是一种普遍存在的多成分细胞途径,负责从真核基因组中去除和修复许多结构不同的DNA损伤。最近已经确定了XPA最小DNA结合结构域(XPA-MBD:M98-F219)的溶液结构,并且用15N标记的XPA-MBD进行的化学位移映射实验表明,XPA沿着位于C端富含环的亚结构域中的碱性表面结合DNA。在这里,使用包含最小DNA结合结构域加上ERCC1结合区域(XPA-EM:M59-F219)的XPA片段进一步表征XPA-DNA相互作用。XPA-EM的15N/1H HSQC谱与XPA-MBD的15N/1H HSQC谱紧密匹配,表明DNA结合结构域在较大的XPA片段中是完整的。用单链DNA寡聚物dCCAATAACC(d9)对XPA-EM进行的化学位移映射实验证实了这一结论,该实验表明添加DNA会影响同一组15N/1H HSQC交叉峰。然而,相对于无DNA的XPA-MBD,无DNA的XPA-EM富含环的亚结构域中许多碱性残基的15N/1H HSQC交叉峰强度较低,或完全消失,这表明XPA-EM的酸性ERRC1结合区域可能与碱性DNA结合表面短暂缔合。虽然XPA-EM中的DNA结合结构域具有结构和功能,但XPA-EM的15N编辑NOESY谱表明酸性ERRC1结合区域是无结构的。如果在XPA中观察到的XPA-EM的结构特征持续存在,ERCC1结合结构域与DNA结合区域的短暂分子内缔合可能在NER组分的顺序组装中起作用。

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