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碱性磷酸酶对二水焦磷酸钙(CPPD)晶体的溶解作用:碱性磷酸酶与CPPD晶体的相互作用

Calcium pyrophosphate dihydrate (CPPD) crystal dissolution by alkaline phosphatase: interaction of alkaline phosphatase on CPPD crystals.

作者信息

Shinozaki T, Xu Y, Cruz T F, Pritzker K P

机构信息

Department of Pathology, Mount Sinai Hospital, Toronto, ON, Canada.

出版信息

J Rheumatol. 1995 Jan;22(1):117-23.

PMID:7699658
Abstract

OBJECTIVE

As alkaline phosphatase (ALP) can dissolve calcium pyrophosphate dihydrate (CPPD) crystals, and as dissolution is facilitated when the enzyme is proximate to the crystals, we studied the mechanism of ALP interaction with CPPD crystals in vitro.

METHODS

ALP was incubated with CPPD crystals in an in vitro model system. Fluorescein isothiocyanate conjugated alkaline phosphatase (FITC-ALP), alkaline phosphatase product staining of calcium pyrophosphate dihydrate (CPPD) crystals and scanning electron microscopy were used to visualize ALP-CPPD crystal interactions.

RESULTS

ALP preferentially binds to the small end faces (optical 010 faces) of CPPD crystals. Etch pits indicative of dissolution were demonstrated coexistent with ALP crystal binding and ALP pyrophosphohydrolytic activity.

CONCLUSION

ALP binding to CPPD crystals is preferential for the smallest end faces (optical 010 faces). As ALP crystal binding is altered by ions but not by heat inactivation of ALP, ALP-CPPD crystal binding is considered a nonenzymatic mechanism distinct from ALP pyrophosphohydrolytic activity. Our study demonstrates that ALP binds and dissolves CPPD crystals in a stereoselective manner. This suggests that the CPPD crystal dissolution rate is limited by the availability of surface area on the crystal faces most susceptible to ALP binding.

摘要

目的

由于碱性磷酸酶(ALP)可溶解二水焦磷酸钙(CPPD)晶体,且当该酶靠近晶体时溶解作用会增强,因此我们在体外研究了ALP与CPPD晶体相互作用的机制。

方法

在体外模型系统中将ALP与CPPD晶体一起孵育。使用异硫氰酸荧光素偶联碱性磷酸酶(FITC-ALP)、二水焦磷酸钙(CPPD)晶体的碱性磷酸酶产物染色以及扫描电子显微镜来观察ALP与CPPD晶体的相互作用。

结果

ALP优先结合于CPPD晶体的小端面(光学010面)。显示出与ALP晶体结合及ALP焦磷酸水解活性共存的表明溶解的蚀坑。

结论

ALP与CPPD晶体的结合优先发生在最小的端面(光学010面)。由于ALP晶体结合受离子影响但不受ALP热失活影响,因此ALP与CPPD晶体的结合被认为是一种不同于ALP焦磷酸水解活性的非酶机制。我们的研究表明,ALP以立体选择性方式结合并溶解CPPD晶体。这表明CPPD晶体的溶解速率受最易与ALP结合的晶体表面面积的可用性限制。

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