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人成骨细胞系细胞中骨碱性磷酸酶的比活性受磷酸盐、磷酸酯和磷酸类似物调控,且碱性磷酸酶活性的释放受钙的反向调控。

Specific activity of skeletal alkaline phosphatase in human osteoblast-line cells regulated by phosphate, phosphate esters, and phosphate analogs and release of alkaline phosphatase activity inversely regulated by calcium.

作者信息

Farley J R, Hall S L, Tanner M A, Wergedal J E

机构信息

Department of Medicine, Loma Linda University, California.

出版信息

J Bone Miner Res. 1994 Apr;9(4):497-508. doi: 10.1002/jbmr.5650090409.

Abstract

We assessed the significance of Ca and phosphate (P(i)) as determinants of (1) the amount of skeletal alkaline phosphatase (ALP) activity in SaOS-2 (human osteosarcoma) cells and normal human bone cells, and (2) the release of ALP activity from the cells into the culture medium. After 24 h in serum-free BGJb medium containing 0.25-2 mM P(i), the specific activity of ALP in SaOS-2 cells was proportional to P(i) concentration (r = 0.99, p < 0.001). The P(i)-dependent increase in ALP activity was time dependent (evident within 6 h) and could not be attributed to decreased ALP release, since P(i) also increased the amount of ALP activity released (r = 0.99, p < 0.001). Parallel studies with Ca (0.25-2.0 mM) showed that the amount of ALP activity released from SaOS-2 cells was inversely proportional to the concentration of Ca (r = -0.85, p < 0.01). This effect was rapid (i.e., observed within 1 h) and could not be attributed to a decrease in the amount of ALP activity in the cells. Phase distribution studies showed that the effect of low Ca to increase ALP release reflected increases in the release of both hydrophilic ALP (i.e., anchorless ALP, released by phosphatidylinositol-glycanase activity) and hydrophobic ALP (i.e., phosphatidylinositol-glycan-anchored ALP, released by membrane vesicle formation). The range of Ca-dependent changes in ALP-specific activity was much smaller than the range of P(i)-dependent changes. The observed correlation between skeletal ALP-specific activity and P(i) was not unique to osteosarcoma cells or to P(i). Similar effects were seen in normal human bone cells in response to P(i) (r = 0.99, p < 0.001) and in SaOS-2 cells in response to a variety of P(i) esters and analogs (e.g., beta-glycero-P(i) and molybdate). Further studies indicated that the effects of phosphoryl compounds on ALP-specific activity could not be correlated with effects on ALP reaction kinetics, cell proliferation, or acid phosphatase activity and that the beta-glycero-P(i)-dependent increase in ALP activity was blocked by cycloheximide but not actinomycin D. Together these data suggest that the function of skeletal ALP may be regulated by P(i) and that Ca may be involved in ALP release.

摘要

我们评估了钙(Ca)和磷酸盐(P(i))作为决定因素的重要性,这些因素包括:(1)人骨肉瘤(SaOS-2)细胞和正常人骨细胞中骨碱性磷酸酶(ALP)活性的量,以及(2)ALP活性从细胞释放到培养基中的情况。在含有0.25 - 2 mM P(i)的无血清BGJb培养基中培养24小时后,SaOS-2细胞中ALP的比活性与P(i)浓度成正比(r = 0.99,p < 0.001)。P(i)依赖的ALP活性增加是时间依赖性的(6小时内明显),且不能归因于ALP释放减少,因为P(i)也增加了释放的ALP活性量(r = 0.99,p < 0.001)。对Ca(0.25 - 2.0 mM)的平行研究表明,从SaOS-2细胞释放的ALP活性量与Ca浓度成反比(r = -0.85,p < 0.01)。这种效应迅速(即1小时内观察到),且不能归因于细胞内ALP活性量的减少。相分布研究表明,低Ca增加ALP释放的效应反映了亲水性ALP(即无锚定ALP,由磷脂酰肌醇聚糖酶活性释放)和疏水性ALP(即磷脂酰肌醇聚糖锚定的ALP,由膜泡形成释放)释放的增加。Ca依赖的ALP比活性变化范围远小于P(i)依赖的变化范围。观察到的骨ALP比活性与P(i)之间的相关性并非骨肉瘤细胞或P(i)所特有。在正常人骨细胞对P(i)的反应中(r = 0.99,p < 0.001)以及在SaOS-2细胞对多种P(i)酯和类似物(如β-甘油磷酸酯和钼酸盐)的反应中也观察到了类似效应。进一步研究表明,磷酰化合物对ALP比活性的影响与对ALP反应动力学、细胞增殖或酸性磷酸酶活性的影响无关,且β-甘油磷酸酯依赖的ALP活性增加被放线菌酮阻断,但不被放线菌素D阻断。这些数据共同表明,骨ALP的功能可能受P(i)调节,且Ca可能参与ALP的释放。

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