The role of tissue-nonspecific alkaline phosphatase in the phosphate-induced activation of alkaline phosphatase and mineralization in SaOS-2 human osteoblast-like cells

被引:5
作者
Hideo Orimo
Takashi Shimada
机构
[1] Nippon Medical School,Division of Molecular Genetics and Nutrition, Department of Biochemistry and Molecular Biology
来源
Molecular and Cellular Biochemistry | 2008年 / 315卷
关键词
Tissue-nonspecific alkaline phosphatase; Mineralization; Levamisole; Phosphonoformic acid; PHEX;
D O I
暂无
中图分类号
学科分类号
摘要
Tissue-nonspecific alkaline phosphatase (TNAP) plays a key role in mineralization by degrading inorganic pyrophosphate and providing free inorganic phosphate. We have previously reported that TNAP is induced by β-glycerophosphate and NaH2PO4 in short-term cultures of SaOS-2 human osteoblast-like cells and that PHEX (phosphate-regulating gene with homologies to endopeptidase on the X chromosome) mRNA is also induced after TNAP induction. In the present study, we have investigated the effects of levamisole, a TNAP inhibitor, and phosphonoformic acid (PFA), a type III sodium-phosphate cotransporter inhibitor, on the phosphate-induced expression of TNAP and mineralization. Levamisole inhibited β-glycerophosphate-induced mineralization, TNAP and PHEX expression, and the increase in enzymatic activity of NPP1 (5′-nucleotide pyrophosphatase phosphodiesterase 1), but did not inhibit NaH2PO4-induced mineralization. PFA completely inhibited NaH2PO4-induced mineralization and NPP1 enzymatic activation, and partly inhibited β-glycerophosphate-induced mineralization, but did not affect the increase in TNAP activity. These results suggest that phosphate derived from TNAP-induced hydrolysis of β-glycerophosphate yields signals that induce TNAP expression and mineralization, and that PHEX expression may be linked to TNAP expression. However, luciferase assays failed to detect any transcriptional activation of the promoter region of the human TNAP gene by β-glycerophosphate or NaH2PO4, suggesting that the effects of these phosphates may be indirect.
引用
收藏
页码:51 / 60
页数:9
相关论文
共 127 条
  • [1] Harris H(1989)The human alkaline phosphatases: what we know and what we don’t know Clin Chim Acta 186 133-150
  • [2] Weiss MJ(1988)Structure of the human liver/bone/kidney alkaline phosphatase gene J Biol Chem 263 12002-12010
  • [3] Ray K(1998)New face of an old enzyme: alkaline phosphatases may contribute to human tissue aging by inducing tissue hardening and calcification Anat Rec 253 91-94
  • [4] Henthorn PS(2004)Impaired calcification around matrix vesicles of growth plate and bone in alkaline phosphatase-deficient mice Am J Pathol 164 841-847
  • [5] Hui M(1995)Molecular biology of matrix vesicles Clin Orthop Relat Res 314 266-280
  • [6] Tenenbaum HC(1999)Matrix vesicle plasma cell membrane glycoprotein-1 regulates mineralization by murine osteoblastic MC3T3 cells J Bone Miner Res 14 883-892
  • [7] Anderson HC(2000)Role of the mouse Science 289 265-270
  • [8] Sipe JB(2001) gene in control of tissue calcification and arthritis Am J Physiol 281 C1-C11
  • [9] Hessle L(2002)Inorganic pyrophosphate generation and disposition on pathophysiology Proc Natl Acad Sci USA 99 9445-9449
  • [10] Anderson HC(2004)Tissue-nonspecific alkaline phosphatase and plasma cell membrane glycoprotein-1 are central antagonistic regulators of bone mineralization Am J Pathol 164 1199-1209