Related ArticlesInteractions of human nucleotide excision repair protein XPA with DNA and RPA70 Delta C327: chemical shift mapping and 15N NMR relaxation studies.
Biochemistry. 1999 Nov 16;38(46):15116-28
Authors: Buchko GW, Daughdrill GW, de Lorimier R, Rao B K, Isern NG, Lingbeck JM, Taylor JS, Wold MS, Gochin M, Spicer LD, Lowry DF, Kennedy MA
Human XPA is an essential component in the multienzyme nucleotide excision repair (NER) pathway. The solution structure of the minimal DNA binding domain of XPA (XPA-MBD: M98-F219) was recently determined [Buchko et al. (1998) Nucleic Acids Res. 26, 2779-2788, Ikegami et al. (1998) Nat. Struct. Biol. 5, 701-706] and shown to consist of a compact zinc-binding core and a loop-rich C-terminal subdomain connected by a linker sequence. Here, the solution structure of XPA-MBD was further refined using an entirely new class of restraints based on pseudocontact shifts measured in cobalt-substituted XPA-MBD. Using this structure, the surface of XPA-MBD which interacts with DNA and a fragment of the largest subunit of replication protein A (RPA70 Delta C327: M1-Y326) was determined using chemical shift mapping. DNA binding in XPA-MBD was highly localized in the loop-rich subdomain for DNA with or without a lesion [dihydrothymidine (dhT) or 6-4-thymidine-cytidine (64TC)], or with DNA in single- or double-stranded form, indicating that the character of the lesion itself is not the driving force for XPA binding DNA. RPA70 Delta C327 was found to contact regions in both the zinc-binding and loop-rich subdomains. Some overlap of the DNA and RPA70 Delta C327 binding regions was observed in the loop-rich subdomain, indicating a possible cooperative DNA-binding mode between XPA and RPA70 Delta C327. To complement the chemical shift mapping data, the backbone dynamics of free XPA-MBD and XPA-MBD bound to DNA oligomers containing dhT or 64TC lesions were investigated using 15N NMR relaxation data. The dynamic analyses for the XPA-MBD complexes with DNA revealed localized increases and decreases in S2 and an increase in the global correlation time. Regions of XPA-MBD with the largest increases in S2 overlapped regions having the largest chemical shifts changes upon binding DNA, indicating that the loop-rich subdomain becomes more rigid upon binding DNA. Interestingly, S2 decreased for some residues in the zinc-binding core upon DNA association, indicating a possible concerted structural rearrangement on binding DNA.
[NMR paper] NMR study of nucleotide-induced changes in the nucleotide binding domain of Thermus t
NMR study of nucleotide-induced changes in the nucleotide binding domain of Thermus thermophilus Hsp70 chaperone DnaK: implications for the allosteric mechanism.
Related Articles NMR study of nucleotide-induced changes in the nucleotide binding domain of Thermus thermophilus Hsp70 chaperone DnaK: implications for the allosteric mechanism.
J Biol Chem. 2004 Aug 6;279(32):33958-67
Authors: Revington M, Holder TM, Zuiderweg ER
We present an NMR investigation of the nucleotide-dependent conformational properties of a 44-kDa nucleotide binding...
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[NMR paper] Human nucleotide excision repair protein XPA: NMR spectroscopic studies of an XPA fra
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).
Related Articles 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).
Mutat Res. 2001 Jun 5;486(1):1-10
Authors: Buchko GW, Isern NG, Spicer LD, Kennedy MA
XPA is a central protein component of nucleotide excision repair (NER), a ubiquitous,...
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11-19-2010 08:32 PM
[NMR paper] Cadmium mutagenicity and human nucleotide excision repair protein XPA: CD, EXAFS and
Cadmium mutagenicity and human nucleotide excision repair protein XPA: CD, EXAFS and (1)H/(15)N-NMR spectroscopic studies on the zinc(II)- and cadmium(II)-associated minimal DNA-binding domain (M98-F219).
Related Articles Cadmium mutagenicity and human nucleotide excision repair protein XPA: CD, EXAFS and (1)H/(15)N-NMR spectroscopic studies on the zinc(II)- and cadmium(II)-associated minimal DNA-binding domain (M98-F219).
Carcinogenesis. 2000 May;21(5):1051-7
Authors: Buchko GW, Hess NJ, Kennedy MA
Human XPA is a 31 kDa protein involved in...
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[NMR paper] NMR analyses of the interactions of human annexin I with ATP, Ca2+, and Mg2+.
NMR analyses of the interactions of human annexin I with ATP, Ca2+, and Mg2+.
Related Articles NMR analyses of the interactions of human annexin I with ATP, Ca2+, and Mg2+.
FEBS Lett. 1998 Apr 3;425(3):523-7
Authors: Han HY, Lee YH, Oh JY, Na DS, Lee BJ
Human annexin I is a member of the annexin family of calcium-dependent phospholipid binding proteins. The structure of an N-terminally truncated human annexin I (delta-annexin I) and its interactions with Ca2+, Mg2+, and ATP were studied at the atomic level using nuclear magnetic resonance...
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[NMR paper] Human nucleotide excision repair protein XPA: expression and NMR backbone assignments
Human nucleotide excision repair protein XPA: expression and NMR backbone assignments of the 14.7 kDa minimal damaged DNA binding domain (Met98-Phe219).
Related Articles Human nucleotide excision repair protein XPA: expression and NMR backbone assignments of the 14.7 kDa minimal damaged DNA binding domain (Met98-Phe219).
J Biomol NMR. 1997 Oct;10(3):313-4
Authors: Buchko GW, Ni S, Thrall BD, Kennedy MA
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[NMR paper] Human nucleotide excision repair protein XPA: 1H NMR and CD solution studies of a syn
Human nucleotide excision repair protein XPA: 1H NMR and CD solution studies of a synthetic peptide fragment corresponding to the zinc-binding domain (101-141).
Related Articles Human nucleotide excision repair protein XPA: 1H NMR and CD solution studies of a synthetic peptide fragment corresponding to the zinc-binding domain (101-141).
J Biomol Struct Dyn. 1997 Jun;14(6):677-90
Authors: Buchko GW, Kennedy MA
A peptide corresponding to residues 101-141 of the human nucleotide excision repair protein XPA was synthesized with an isoleucine...
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[NMR paper] Human nucleotide excision repair protein XPA: 1H NMR and CD solution studies of a syn
Human nucleotide excision repair protein XPA: 1H NMR and CD solution studies of a synthetic peptide fragment corresponding to the zinc-binding domain (101-141).
Related Articles Human nucleotide excision repair protein XPA: 1H NMR and CD solution studies of a synthetic peptide fragment corresponding to the zinc-binding domain (101-141).
J Biomol Struct Dyn. 1997 Jun;14(6):677-90
Authors: Buchko GW, Kennedy MA
A peptide corresponding to residues 101-141 of the human nucleotide excision repair protein XPA was synthesized with an isoleucine...
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[NMR paper] Mapping the nucleotide-dependent conformational change of human N-ras p21 in solution
Mapping the nucleotide-dependent conformational change of human N-ras p21 in solution by heteronuclear-edited proton-observed NMR methods.
Related Articles Mapping the nucleotide-dependent conformational change of human N-ras p21 in solution by heteronuclear-edited proton-observed NMR methods.
Biochemistry. 1993 Jul 6;32(26):6763-72
Authors: Hu JS, Redfield AG
Heteronuclear-edited proton-detected NMR methods are used to study the nucleotide-dependent conformational change between GDP- and GTP gamma S-bound forms of human N-ras p21. Amide...