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大鼠胰岛中己糖五乙酸酯的水解

Hydrolysis of hexose pentaacetate esters in rat pancreatic islets.

作者信息

Vanhoutte C, Sener A, Malaisse W J

机构信息

Laboratory of Experimental Medicine, Brussels Free University, 808 Route de Lennik, B-1070 Brussels, Belgium.

出版信息

Biochim Biophys Acta. 1998 Oct 21;1405(1-3):78-84. doi: 10.1016/s0167-4889(98)00103-7.

Abstract

The pentaacetate esters of selected hexoses were recently found to stimulate insulin release. The kinetics of their hydrolysis was now investigated in both rat pancreatic islet homogenates and intact islets. In islet homogenates, the hydrolysis of alpha-d-glucose pentaacetate, as judged from the measurement of acetate production, displayed a pH optimum of 7.4 and a Km for the ester of 0.95 mM. At pH 7.4, the reaction velocity was about 5 times higher than the rate of alpha-d-glucose pentaacetate hydrolysis by intact islets, as judged from the ester-induced increase in the acetate content of both the islet and surrounding incubation medium. Comparable results were obtained in intact islets exposed to either beta-l-glucose pentaacetate or beta-d-galactose pentaacetate. The ester content of the islets after 120 min incubation was close to 0.1 nmol/islet, yielding an apparent intracellular concentration at least one order of magnitude higher than the extracellular concentration (1.7 mM). These findings indicate that hexose esters that either stimulate insulin release or fail to do so are equally well taken up and hydrolyzed by islet cells. They are compatible, therefore, with the view that the insulinotropic action of some of these esters may be favored by the catabolism of their hexose moiety, although some other mechanisms for stimulation of insulin release must be operative in the case of beta-l-glucose pentaacetate.

摘要

最近发现,选定己糖的五乙酸酯能刺激胰岛素释放。现在对其在大鼠胰岛匀浆和完整胰岛中的水解动力学进行了研究。在胰岛匀浆中,通过测量乙酸盐生成量判断,α-D-葡萄糖五乙酸酯的水解在pH值为7.4时达到最佳,该酯的Km值为0.95 mM。在pH 7.4时,根据酯诱导的胰岛和周围孵育培养基中乙酸盐含量的增加判断,反应速度比完整胰岛中α-D-葡萄糖五乙酸酯的水解速度高约5倍。在暴露于β-L-葡萄糖五乙酸酯或β-D-半乳糖五乙酸酯的完整胰岛中也得到了类似结果。孵育120分钟后,胰岛中的酯含量接近0.1 nmol/胰岛,产生的细胞内表观浓度比细胞外浓度(1.7 mM)至少高一个数量级。这些发现表明,无论是刺激胰岛素释放还是未能刺激胰岛素释放的己糖酯,胰岛细胞对它们的摄取和水解效果是一样的。因此,这些结果与以下观点相符:尽管对于β-L-葡萄糖五乙酸酯而言,一定还有其他刺激胰岛素释放的机制在起作用,但其中一些酯的促胰岛素作用可能因其己糖部分的分解代谢而得到促进。

相似文献

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Hydrolysis of hexose pentaacetate esters in rat pancreatic islets.大鼠胰岛中己糖五乙酸酯的水解
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