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聚焦于钙化中 NPP1 的 NPP 核苷酸焦磷酸酶/磷酸二酯酶家族的生理和病理功能。

Physiologic and pathologic functions of the NPP nucleotide pyrophosphatase/phosphodiesterase family focusing on NPP1 in calcification.

机构信息

University of California School of Medicine, VA Medical Center, 3350 La Jolla Village Drive, San Diego, CA, USA,

出版信息

Purinergic Signal. 2006 Jun;2(2):371-7. doi: 10.1007/s11302-005-5304-3. Epub 2006 Jun 1.

Abstract

The catabolism of ATP and other nucleotides participates partly in the important function of nucleotide salvage by activated cells and also in removal or de novo generation of compounds including ATP, ADP, and adenosine that stimulate purinergic signaling. Seven nucleotide pyrophosphatase/phosphodiesterase NPP family members have been identified to date. These isoenzymes, related by up conservation of catalytic domains and certain other modular domains, exert generally non-redundant functions via distinctions in substrates and/or cellular localization. But they share the capacity to hydrolyze phosphodiester or pyrophosphate bonds, though generally acting on distinct substrates that include nucleoside triphosphates, lysophospholipids and choline phosphate esters. PP(i) generation from nucleoside triphosphates, catalyzed by NPP1 in tissues including cartilage, bone, and artery media smooth muscle cells, supports normal tissue extracellular PP(i) levels. Balance in PP(i) generation relative to PP(i) degradation by pyrophosphatases holds extracellular PP(i) levels in check. Moreover, physiologic levels of extracellular PP(i) suppress hydroxyapatite crystal growth, but concurrently providing a reservoir for generation of pro-mineralizing P(i). Extracellular PP(i) levels must be supported by cells in mineralization-competent tissues to prevent pathologic calcification. This support mechanism becomes dysregulated in aging cartilage, where extracellular PP(i) excess, mediated in part by upregulated NPP1 expression stimulates calcification. PP(i) generated by NPP1modulates not only hydroxyapatite crystal growth but also chondrogenesis and expression of the mineralization regulator osteopontin. This review pays particular attention to the role of NPP1-catalyzed PP(i) generation in the pathogenesis of certain disorders associated with pathologic calcification.

摘要

ATP 和其他核苷酸的分解代谢部分参与了激活细胞中核苷酸补救的重要功能,也参与了包括 ATP、ADP 和腺苷在内的化合物的去除或从头生成,这些化合物刺激嘌呤能信号。迄今为止,已经鉴定出 7 种核苷酸焦磷酸酶/磷酸二酯酶 NPP 家族成员。这些同工酶通过催化结构域和某些其他模块结构域的高度保守性相关,通过区分底物和/或细胞定位发挥一般非冗余的功能。但它们都具有水解磷酸二酯或焦磷酸键的能力,尽管通常作用于不同的底物,包括核苷三磷酸、溶血磷脂和胆碱磷酸酯。NPP1 在包括软骨、骨和动脉中层平滑肌细胞在内的组织中催化核苷三磷酸生成 PP(i),支持正常组织细胞外 PP(i)水平。与焦磷酸酶降解相比,PP(i)生成的平衡控制细胞外 PP(i)水平。此外,细胞外 PP(i)的生理水平抑制羟基磷灰石晶体生长,但同时为生成促矿化 P(i)提供了储备。有矿化能力的组织中的细胞必须支持细胞外 PP(i)水平,以防止病理性钙化。这种支持机制在衰老软骨中失调,其中部分由上调的 NPP1 表达介导的细胞外 PP(i)过剩刺激钙化。NPP1 催化的 PP(i)生成不仅调节羟基磷灰石晶体生长,还调节软骨生成和矿化调节剂骨桥蛋白的表达。本综述特别关注 NPP1 催化的 PP(i)生成在某些与病理性钙化相关的疾病发病机制中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d70/2254483/03d8d35677e5/11302_2005_Article_5304_Fig1.jpg

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