Possible functions of alkaline phosphatase in dental mineralization: cadmium effects.

Journal de biologie buccale Pub Date : 1991-06-01
J H Wöltgens, D M Lyaruu, T J Bervoets
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引用次数: 0

Abstract

In mineralizing dental tissues the non-specific alkaline phosphatase, using paranitrophenylphosphate (p-NPP) as substrate, is also capable of splitting inorganic pyrophosphate (PPi). In contrast to the p-NPP-ase part of the enzyme, the PPi-ase part requires Zn2+ as a cofactor for its hydrolytic activity. The PPi-ase activity of the enzyme can be inhibited by cadmium ions (Cd2+), perhaps by replacing Zn2+ from the active site of the enzyme molecule. In addition to splitting PPi, the PPi-ase part of the enzyme may also be involved in the phosphorylation process of yet undetermined organic macromolecules. Cd2+ inhibits this phosphorylation process. Inhibition of the PPi-ase activity can also be accomplished by ascorbic acid known for its capacity to complex bivalent cations. Ascorbic acid may accordingly also remove Zn2+ from the active site of the PPi-ase. It is suggested that in developing dental tissues alkaline phosphatase is not only associated with the transport of phosphate ions towards the mineralization front, but is also involved in the phosphorylation of organic macromolecules, a process activated the PPi-ase part of the enzyme.

碱性磷酸酶在牙矿化中的可能功能:镉效应。
在矿化牙齿组织的非特异性碱性磷酸酶,使用副硝基苯基磷酸(p-NPP)作为底物,也能够分裂无机焦磷酸盐(PPi)。与酶的p- npp酶部分相反,ppi酶部分需要Zn2+作为其水解活性的辅因子。镉离子(Cd2+)可能通过取代酶分子活性位点的Zn2+来抑制ppi酶的活性。除了分裂PPi外,该酶的PPi酶部分还可能参与尚未确定的有机大分子的磷酸化过程。Cd2+抑制这个磷酸化过程。ppi酶活性的抑制也可以通过抗坏血酸来完成,抗坏血酸以其复合二价阳离子的能力而闻名。抗坏血酸也可以从ppi酶的活性部位去除Zn2+。结果表明,在牙组织发育过程中,碱性磷酸酶不仅与磷酸离子向矿化前沿的转运有关,而且还参与有机大分子的磷酸化,这一过程激活了酶的ppi酶部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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