論文

査読有り
2013年1月

Crystallization and preliminary X-ray analysis of human MTH1 with a homogeneous N-terminus

ACTA CRYSTALLOGRAPHICA SECTION F-STRUCTURAL BIOLOGY AND CRYSTALLIZATION COMMUNICATIONS
  • Yukari Koga
  • Miyuki Inazato
  • Teruya Nakamura
  • Chie Hashikawa
  • Mami Chirifu
  • Asuka Michi
  • Taku Yamashita
  • Sachiko Toma
  • Akihiko Kuniyasu
  • Shinji Ikemizu
  • Yusaku Nakabeppu
  • Yuriko Yamagata
  • 全て表示

69
Pt 1
開始ページ
45
終了ページ
48
記述言語
英語
掲載種別
研究論文(学術雑誌)
DOI
10.1107/S1744309112048002
出版者・発行元
WILEY-BLACKWELL

Human MTH1 (hMTH1) is an enzyme that hydrolyses several oxidized purine nucleoside triphosphates to their corresponding nucleoside monophosphates. Crystallographic studies have shown that the accurate mode of interaction between 8-oxoguanine and hMTH1 cannot be understood without determining the positions of the H atoms, as can be observed in neutron and/or ultrahigh-resolution X-ray diffraction studies. The hMTH1 protein prepared in the original expression system from Escherichia coli did not appear to be suitable for obtaining high-quality crystals because the hMTH1 protein had heterogeneous N-termini of Met1 and Gly2 that resulted from N-terminal Met excision by methionine aminopeptidase from the E. coli host. To obtain homogeneous hMTH1, the Gly at the second position was replaced by Lys. As a result, mutant hMTH1 protein [hMTH1(G2K)] with a homogeneous N-terminus could be prepared and high-quality crystals which diffracted to near 1.1 angstrom resolution using synchrotron radiation were produced. The new crystals belonged to space group P2(1)2(1)2(1), with unit-cell parameters a = 46.36, b = 47.58, c = 123.89 angstrom.

リンク情報
DOI
https://doi.org/10.1107/S1744309112048002
PubMed
https://www.ncbi.nlm.nih.gov/pubmed/23295485
Web of Science
https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=JSTA_CEL&SrcApp=J_Gate_JST&DestLinkType=FullRecord&KeyUT=WOS:000313055000011&DestApp=WOS_CPL
ID情報
  • DOI : 10.1107/S1744309112048002
  • ISSN : 1744-3091
  • PubMed ID : 23295485
  • Web of Science ID : WOS:000313055000011

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