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大鼠心脏微血管内皮细胞对细胞外ATP的水解动力学

Kinetics of extracellular ATP hydrolysis by microvascular endothelial cells from rat heart.

作者信息

Meghji P, Pearson J D, Slakey L L

机构信息

Vascular Biology Research Centre, King's College London, U.K.

出版信息

Biochem J. 1995 Jun 15;308 ( Pt 3)(Pt 3):725-31. doi: 10.1042/bj3080725.

Abstract

We have characterized the ectonucleotidases that catalyse the reaction sequence ATP-->ADP-->AMP-->adenosine on microvascular endothelial cells cultured from the rat heart. Computer simulation and data fitting of progress of reaction curves showed that depletion of substrate at the cell surface dominates the regulation of the rate of hydrolysis of ATP when it is presented to the cells. Preferential delivery of AMP by ADPase to 5'-nucleotidase makes a significant contribution to the regulation of adenosine production from ATP or ADP. By contrast, we found no evidence for the preferential delivery of ADP from ATPase to ADPase. Feed-forward inhibition of AMP hydrolysis by ADP and/or ATP also modulated the rate of adenosine production. The properties of the ectonucleotidases on rat heart microvascular cells are such that adenosine is produced at a steady rate over a wide range of ATP concentrations.

摘要

我们已经对从大鼠心脏培养的微血管内皮细胞上催化ATP→ADP→AMP→腺苷这一反应序列的外切核苷酸酶进行了特性描述。反应曲线进程的计算机模拟和数据拟合表明,当向细胞提供ATP时,细胞表面底物的消耗主导了ATP水解速率的调节。ADP酶将AMP优先传递给5'-核苷酸酶,这对从ATP或ADP产生腺苷的调节有显著贡献。相比之下,我们没有发现ATP酶将ADP优先传递给ADP酶的证据。ADP和/或ATP对AMP水解的前馈抑制也调节了腺苷的产生速率。大鼠心脏微血管细胞上外切核苷酸酶的特性使得在广泛的ATP浓度范围内,腺苷以稳定的速率产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/016c/1136785/ed74063c8f2b/biochemj00061-0041-a.jpg

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