Resonance assignments, solution structure, and backbone dynamics of the DNA- and RPA-binding domain of human repair factor XPA

被引:26
作者
Ikegami, T
Kuraoka, I
Saijo, M
Kodo, N
Kyogoku, Y
Morikawa, K
Tanaka, K
Shirakawa, M
机构
[1] Nara Inst Sci & Technol, Grad Sch Biol Sci, Nara 6300101, Japan
[2] Osaka Univ, Inst Mol & Cellular Biol, Suita, Osaka 5650871, Japan
[3] Biomol Engn Res Inst, Suita, Osaka 5650874, Japan
[4] Osaka Univ, Inst Prot Res, Suita, Osaka 5650871, Japan
关键词
NMR; nucleotide excision repair; relaxation; xeroderma pigmentosum; XPA;
D O I
10.1093/oxfordjournals.jbchem.a022313
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
XPA is involved in the damage recognition step of nucleotide excision repair (NER), XPA binds to other repair factors, and acts as a key element in NER complex formation. The central domain of human repair factor XPA (residues Met98 to Phe219) is responsible for the preferential binding to damaged DNA and to replication protein A (RPA), The domain consists of a zinc-containing subdomain with a compact globular structure and a C-terminal subdomain with a positively charged cleft in a novel alpha/beta structure. The resonance assignments and backbone dynamics of the central domain of human XPA were studied by multidimensional heteronuclear NMR methods, N-15 relaxation data were obtained at two static magnetic fields, and analyzed by means of the model-free formalism under the assumption of isotropic or anisotropic rotational diffusion, In addition, exchange contributions were estimated by analysis of the spectral density function at zero frequency. The results show that the domain exhibits a rotational diffusion anisotropy (D-parallel to/D-perpendicular to) of 1.38, and that most of the flexible regions exist on the DNA binding surface in the cleft in the C-terminal subdomain, This flexibility may be involved in the interactions of XPA with various kinds of damaged DNA.
引用
收藏
页码:495 / 506
页数:12
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