Literature DB >> 16607562

The GT to GC single nucleotide polymorphism at the beginning of an alternative exon 2C of human MTH1 gene confers an amino terminal extension that functions as a mitochondrial targeting signal.

Yasunari Sakai1, Hisanobu Oda, Daisuke Yoshimura, Masato Furuichi, Dongchon Kang, Shigenori Iwai, Toshiro Hara, Yusaku Nakabeppu.   

Abstract

Human MTH1 protein hydrolyzes oxidized purine nucleotides 8-oxo-2'-deoxyguanosine triphosphate (8-oxo-dGTP), 2-OH-dATP or their ribo-forms to their monophosphates, thus minimizing replicational and transcriptional errors both in the nuclei and mitochondria. MTH1 suppresses mitochondrial dysfunction and cell death caused by H(2)O(2). Furthermore, MTH1 suppresses the transient increase in 8-oxoguanine in mitochondrial DNA in the dopaminergic nerve terminals in mouse striatum after 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine administration, and it protects the nerve terminals. We previously reported that a novel MTH1 allele with a single nucleotide polymorphism (SNP) in its exon 2c segment encodes the fourth MTH1 isoform, namely, MTH1a (p26), in addition to the three known isoforms, MTH1b (p22), c (p21), and d (p18). Another SNP located in exon 4 of the MTH1 gene, which is closely linked to the SNP in exon 2c, substitutes the Val83 residue in MTH1d with Met83. We herein show that all MTH1 isoforms efficiently hydrolyzed 2-OH-dATP and 8-oxo-dGTP. The amino terminal region of MTH1a functioned as a mitochondrial targeting signal when it was expressed in the HeLa cells as a fusion protein with enhanced green fluorescent protein. The cellular fractionation revealed that MTH1a(Met83) was localized in the mitochondria to the same extent as was MTH1d(Val83). However, the mitochondrial translocation of MTH1d(Met83) was less efficient than that of MTH1d(Val83).

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Year:  2006        PMID: 16607562     DOI: 10.1007/s00109-006-0053-5

Source DB:  PubMed          Journal:  J Mol Med (Berl)        ISSN: 0946-2716            Impact factor:   4.599


  36 in total

1.  Accumulation of 8-oxo-2'-deoxyguanosine and increased expression of hMTH1 protein in brain tumors.

Authors:  T Iida; A Furuta; M Kawashima; J Nishida; Y Nakabeppu; T Iwaki
Journal:  Neuro Oncol       Date:  2001-04       Impact factor: 12.300

2.  A molecular basis for the selective recognition of 2-hydroxy-dATP and 8-oxo-dGTP by human MTH1.

Authors:  Yasunari Sakai; Masato Furuichi; Masayuki Takahashi; Masaki Mishima; Shigenori Iwai; Masahiro Shirakawa; Yusaku Nakabeppu
Journal:  J Biol Chem       Date:  2001-12-27       Impact factor: 5.157

3.  Computational method to predict mitochondrially imported proteins and their targeting sequences.

Authors:  M G Claros; P Vincens
Journal:  Eur J Biochem       Date:  1996-11-01

4.  Transfer of the E. coli O6-methylguanine methyltransferase gene into repair-deficient human cells and restoration of cellular resistance to N-methyl-N'-nitro-N-nitrosoguanidine.

Authors:  K Ishizaki; T Tsujimura; H Yawata; C Fujio; Y Nakabeppu; M Sekiguchi; M Ikenaga
Journal:  Mutat Res       Date:  1986-09       Impact factor: 2.433

Review 5.  Oxidants, antioxidants, and the degenerative diseases of aging.

Authors:  B N Ames; M K Shigenaga; T M Hagen
Journal:  Proc Natl Acad Sci U S A       Date:  1993-09-01       Impact factor: 11.205

6.  Spontaneous tumorigenesis in mice defective in the MTH1 gene encoding 8-oxo-dGTPase.

Authors:  T Tsuzuki; A Egashira; H Igarashi; T Iwakuma; Y Nakatsuru; Y Tominaga; H Kawate; K Nakao; K Nakamura; F Ide; S Kura; Y Nakabeppu; M Katsuki; T Ishikawa; M Sekiguchi
Journal:  Proc Natl Acad Sci U S A       Date:  2001-09-25       Impact factor: 11.205

7.  The oxidized forms of dATP are substrates for the human MutT homologue, the hMTH1 protein.

Authors:  K Fujikawa; H Kamiya; H Yakushiji; Y Fujii; Y Nakabeppu; H Kasai
Journal:  J Biol Chem       Date:  1999-06-25       Impact factor: 5.157

8.  Formation of 2-hydroxydeoxyadenosine triphosphate, an oxidatively damaged nucleotide, and its incorporation by DNA polymerases. Steady-state kinetics of the incorporation.

Authors:  H Kamiya; H Kasai
Journal:  J Biol Chem       Date:  1995-08-18       Impact factor: 5.157

9.  Hydroxylation of deoxyguanosine at the C-8 position by ascorbic acid and other reducing agents.

Authors:  H Kasai; S Nishimura
Journal:  Nucleic Acids Res       Date:  1984-02-24       Impact factor: 16.971

10.  Structure of human MTH1, a Nudix family hydrolase that selectively degrades oxidized purine nucleoside triphosphates.

Authors:  Masaki Mishima; Yasunari Sakai; Noriyuki Itoh; Hiroyuki Kamiya; Masato Furuichi; Masayuki Takahashi; Yuriko Yamagata; Shigenori Iwai; Yusaku Nakabeppu; Masahiro Shirakawa
Journal:  J Biol Chem       Date:  2004-05-07       Impact factor: 5.157

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  3 in total

Review 1.  Function of alternative splicing.

Authors:  Olga Kelemen; Paolo Convertini; Zhaiyi Zhang; Yuan Wen; Manli Shen; Marina Falaleeva; Stefan Stamm
Journal:  Gene       Date:  2012-08-15       Impact factor: 3.688

2.  Radiolabeled 6-(2, 3-Dichlorophenyl)-N4-methylpyrimidine-2, 4-diamine (TH287): A Potential Radiotracer for Measuring and Imaging MTH1.

Authors:  Huaping Chen; Sadia Afrin; Yingqiu Guo; Wenhua Chu; Tammie L S Benzinger; Buck E Rogers; Joel R Garbow; Joel S Perlmutter; Dong Zhou; Jinbin Xu
Journal:  Int J Mol Sci       Date:  2020-11-23       Impact factor: 5.923

3.  GSTP1 rs1695 is associated with both hematological toxicity and prognosis of ovarian cancer treated with paclitaxel plus carboplatin combination chemotherapy: a comprehensive analysis using targeted resequencing of 100 pharmacogenes.

Authors:  Tomoko Yoshihama; Koya Fukunaga; Akira Hirasawa; Hiroyuki Nomura; Tomoko Akahane; Fumio Kataoka; Wataru Yamagami; Daisuke Aoki; Taisei Mushiroda
Journal:  Oncotarget       Date:  2018-07-03
  3 in total

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