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Probing the roles of active site residues in the 3 '-5 ' exonuclease of the Werner syndrome protein SCIE SCOPUS

Title
Probing the roles of active site residues in the 3 '-5 ' exonuclease of the Werner syndrome protein
Authors
Choi, JMKang, SYBae, WJJin, KSRee, MCho, Y
Date Issued
2007-03-30
Publisher
AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
Abstract
Werner syndrome is a premature aging disease caused by mutations in the WS gene and a deficiency in the function of Werner protein (WRN). The lack of WRN results in a cellular phenotype of genomic instability. WRN belongs to the RecQ DNA helicase family, but unlike other RecQ family members it possesses a functional exonuclease domain. We determined the crystal structure of mWRNexo (residues 31-238) bound to Zn2+ and the sulfate ion. Compared with the structure of human WRNexo (hWRNexo), notable conformational changes were observed in several active site residues in an H5-H6 loop and in helices H6 and H7 of mWRNexo, presumably because of the presence of sulfate, which mimics the phosphate of substrate DNA. In particular, the side chains of Lys(185) and Tyr(206) were reoriented toward the Zn2+ ion, whereas the side chain of Arg(190) pointed away from the active site center. Mutational analysis of these conserved residues abolished WRN exonuclease activity, suggesting that these residues play a critical role in the WRNexo activity. Based on substrate modeling and mutational analyses, we propose a mechanism by which WRNexo becomes activated upon substrate DNA binding. We also describe the low resolution trimeric structure of mouse WRNexo (mWRNexoL, residues 31-330), as elucidated by small angle x-ray scattering (SAXS) analyses.
Keywords
DNA HELICASE; EXONUCLEASE; CELLS; WRN; RECOMBINATION; INVITRO
URI
https://oasis.postech.ac.kr/handle/2014.oak/29498
DOI
10.1074/JBC.M609657200
ISSN
0021-9258
Article Type
Article
Citation
JOURNAL OF BIOLOGICAL CHEMISTRY, vol. 282, no. 13, page. 9941 - 9951, 2007-03-30
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이문호REE, MOONHOR
Dept of Chemistry
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