Functional analysis of the single nucleotide polymorphism (787T>C) in the tissue-nonspecific alkaline phosphatase gene associated with BMD

被引:40
作者
Goseki-Sone, M
Sogabe, N
Fukushi-Irie, M
Mizoi, L
Orimo, H
Suzuki, T
Nakamura, H
Orimo, H
Hosoi, T
机构
[1] Japan Womens Univ, Dept Food & Nutr, Bunkyo Ku, Tokyo 1128681, Japan
[2] Nippon Med Coll, Dept Biochem & Mol Biol, Tokyo 113, Japan
[3] Tokyo Metropolitan Inst Gerontol, Tokyo, Japan
[4] Gakushuin Univ, Fac Sci, Dept Chem, Tokyo 171, Japan
[5] Hlth Sci Univ, Tokyo, Japan
[6] Tokyo Metropolitan Geriatr Hosp, Endocrinol Sect, Tokyo 173, Japan
关键词
single-nucleotide polymorphism; tissue-nonspecific alkaline phosphatase; BMD; expression vector; osteoporosis;
D O I
10.1359/JBMR.041229
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Polymorphisms of the TNSALP gene have not previously been studied as a possible determinant for variations in BMD or as a predisposing genetic factor for osteoporosis. This study showed a significantly higher association between the 787T > C (Tyr246His) TNSALP gene and BMD among 501 postmenopausal women. Furthermore, the effects of amino acid substitution on the catalytic property of the protein translated from the 787T > C gene were examined. Introduction: Alkaline phosphatase (ALP) is present mainly on the cell membrane in various tissues and hydrolyzes a variety of monophosphate esters into inorganic phosphoric acid and alcohol. Human ALPs are classified into four types: tissue-nonspecific, intestinal, placental, and germ cell types. Based on studies of hypophosphatasia, which is a systemic skeletal disorder resulting from a tissue-nonspecific ALP (TNSALP) deficiency, TNSALP was suggested to be indispensable for bone mineralization. Materials and Methods: We explored the possibility that the TNSALP gene may contribute to age-related bone loss in humans by examining the association between TNSALP gene polymorphisms and BMD in 501 Japanese postmenopausal women. To analyze the protein translated from the TNSALP gene associated with BMD, we constructed a TNSALP cDNA expression plasmid. Results: We genotyped two single nucleotide polymorphisms (787T > C[Tyr246His] and 876A > G[Pro275Pro]), which proved to be in complete linkage disequilibrium. There was a significant difference in BMD and the BMD score adjusted for age and body weight (Z score) among haplotypes (p = 0.041), which was lowest among 787T/876A homozygotes, highest among 787T > C/876A > G homozygotes, and intermediate among heterozygotes. In subgroups divided by age, haplotypes were significantly associated with BMD in older postmenopausal women (> 74 years; p = 0.001), but not in younger postmenopausal women (< 74 years; p = 0.964). Expression of the 787T > C TNSALP gene using COS-1 cells showed that the protein translated from 787T > C had ALP-specific activity similar to that of 787T. Interestingly, the K-m value for TNSALP in cells transfected with the 787T > C TNSALP gene was decreased significantly compared with that of cells bearing the 787T gene, reflecting the higher affinity. Conclusions: These results suggest that variation in TNSALP may be an important determinant of age-related bone loss in humans and that the phosphate metabolism pathway may provide a novel target for the prevention and treatment of osteoporosis.
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收藏
页码:773 / 782
页数:10
相关论文
共 46 条
[1]   Kinetic characterization of hypophosphatasia mutations with physiological substrates [J].
Di Mauro, S ;
Manes, T ;
Hessle, L ;
Kozlenkov, A ;
Pizauro, JM ;
Hoylaerts, MF ;
Millán, JL .
JOURNAL OF BONE AND MINERAL RESEARCH, 2002, 17 (08) :1383-1391
[2]   Association of molecular variants, haplotypes, and linkage disequilibrium within the human vitamin D-binding protein (DBP) gene with postmenopausal bone mineral density [J].
Ezura, Y ;
Nakajima, T ;
Kajita, M ;
Ishida, R ;
Inoue, S ;
Yoshida, H ;
Suzuki, T ;
Shiraki, M ;
Hosoi, T ;
Orimo, H ;
Emi, M .
JOURNAL OF BONE AND MINERAL RESEARCH, 2003, 18 (09) :1642-1649
[3]   Intracellular retention and degradation of tissue-nonspecific alkaline phosphatase with a Gly317→Asp substitution associated with lethal hypophosphatasia [J].
Fukushi, M ;
Amizuka, N ;
Hoshi, K ;
Ozawa, H ;
Kumagai, H ;
Omura, S ;
Misumi, Y ;
Ikehara, Y ;
Oda, K .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1998, 246 (03) :613-618
[4]   Possible interference between tissue-non-specific alkaline phosphatase with an Arg54 → Cys substitution and a counterpart with an Asp277 → Ala substitution found in a compound heterozygote associated with severe hypophosphatasia [J].
Fukushi-Irié, M ;
Ito, M ;
Amaya, Y ;
Amizuka, N ;
Ozawa, H ;
Omura, S ;
Ikehara, Y ;
Oda, K .
BIOCHEMICAL JOURNAL, 2000, 348 (03) :633-642
[5]   IDENTIFICATION OF BONE-TYPE ALKALINE-PHOSPHATASE MESSENGER-RNA FROM HUMAN PERIODONTAL-LIGAMENT CELLS [J].
GOSEKI, M ;
OIDA, S ;
TAKEDA, K ;
OGATA, Y ;
IIMURA, T ;
MARUOKA, Y ;
SASAKI, S .
JOURNAL OF DENTAL RESEARCH, 1995, 74 (01) :319-322
[6]   DETECTION OF MINOR IMMUNOLOGICAL DIFFERENCES AMONG HUMAN UNIVERSAL-TYPE ALKALINE-PHOSPHATASES [J].
GOSEKI, M ;
OIDA, S ;
SASAKI, S .
JOURNAL OF CELLULAR BIOCHEMISTRY, 1988, 38 (03) :155-163
[7]   Phosphate depletion enhances tissue-nonspecific alkaline phosphatase gene expression in a cultured mouse marrow stromal cell line ST2 [J].
Goseki-Sone, M ;
Yamada, A ;
Asahi, K ;
Hirota, A ;
Ezawa, I ;
Iimura, T .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1999, 265 (01) :24-28
[8]   Phosphate depletion enhances bone morphogenetic protein-4 gene expression in a cultured mouse marrow stromal cell line ST2 [J].
Goseki-Sone, M ;
Yamada, A ;
Hamatani, R ;
Mizoi, L ;
Iimura, T ;
Ezawa, I .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2002, 299 (03) :395-399
[9]  
Goseki-Sone M, 1998, HUM MUTAT, pS263
[10]   Expression of the mutant (1735T-DEL) tissue-nonspecific alkaline phosphatase gene from hypophosphatasia patients [J].
Goseki-Sone, M ;
Orimo, H ;
Iimura, T ;
Miyazaki, H ;
Oda, K ;
Shibata, H ;
Yanagishita, M ;
Takagi, Y ;
Watanabe, H ;
Shimada, T ;
Oida, S .
JOURNAL OF BONE AND MINERAL RESEARCH, 1998, 13 (12) :1827-1834