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大鼠肝细胞膜中神经酰胺-1-磷酸磷酸酶活性的检测与特性分析。

Detection and characterization of ceramide-1-phosphate phosphatase activity in rat liver plasma membrane.

作者信息

Boudker O, Futerman A H

机构信息

Department of Membrane Research and Biophysics, Weizmann Institute of Science Rehovot, Israel.

出版信息

J Biol Chem. 1993 Oct 15;268(29):22150-5.

PMID:8408075
Abstract

A calcium-dependent ceramide (Cer) kinase was recently detected in human leukemia (HL-60) cells (Kolesnick, R.N., and Hemer, M.R. (1990) J. Biol. Chem. 265, 18803-18808) where it may function in terminating the regulatory effects of Cer, and in synaptic vesicles (Bajjalieh, S. M., Martin, T. F. J., and Floor, E. (1989) J. Biol. Chem. 264, 14354-14360). We now demonstrate that the addition of both Cer-1-phosphate (Cer-1-P) and a short-acyl chain analog of Cer-1-P,N-hexanoylsphingosine-1-phosphate (C6-Cer-1-P) to cultured cells and a variety of subcellular fractions results in rapid degradation to Cer and C6-Cer, respectively. The Cer-1-P phosphatase activity is enriched in a rat liver plasma membrane fraction and appears to be distinct from the phosphatase that hydrolyzes phosphatidic acid (PA), PA phosphohydrolase, as shown by the difference in sensitivity of Cer-1-P and PA hydrolysis to propranolol, detergent, and heat treatment. Moreover, the Km of Cer-1-P hydrolysis is 10-fold lower than the Km of PA hydrolysis in plasma membrane. PA is a noncompetitive inhibitor of Cer-1-P hydrolysis, with an inhibition constant 1-1.5-fold higher than the Km of Cer-1-P hydrolysis. In contrast, Cer-1-P does not inhibit PA hydrolysis. Finally, we describe the synthesis of a novel analog of Cer-1-P which is not hydrolyzed in vitro and in vivo and is internalized in cultured cells by endocytosis. These results are discussed in relation to the possible roles of Cer-1-P in regulating intracellular levels of Cer.

摘要

最近在人白血病(HL - 60)细胞(Kolesnick,R.N.和Hemer,M.R.(1990)《生物化学杂志》265,18803 - 18808)中检测到一种钙依赖性神经酰胺(Cer)激酶,它可能在终止Cer的调节作用中发挥功能,并且在突触小泡中也有发现(Bajjalieh,S.M.,Martin,T.F.J.和Floor,E.(1989)《生物化学杂志》264,14354 - 14360)。我们现在证明,将神经酰胺 - 1 - 磷酸(Cer - 1 - P)和Cer - 1 - P的短酰基链类似物N - 己酰鞘氨醇 - 1 - 磷酸(C6 - Cer - 1 - P)添加到培养细胞和各种亚细胞组分中,分别导致它们迅速降解为Cer和C6 - Cer。Cer - 1 - P磷酸酶活性在大鼠肝脏质膜组分中富集,并且似乎与水解磷脂酸(PA)的磷酸酶(PA磷酸水解酶)不同,这通过Cer - 1 - P和PA水解对普萘洛尔、去污剂和热处理的敏感性差异得以证明。此外,质膜中Cer - 1 - P水解的Km比PA水解的Km低10倍。PA是Cer - 1 - P水解的非竞争性抑制剂,其抑制常数比Cer - 1 - P水解的Km高1 - 1.5倍。相反,Cer - 1 - P不抑制PA水解。最后,我们描述了一种新型Cer - 1 - P类似物的合成,该类似物在体外和体内均不被水解,并且通过内吞作用被内化到培养细胞中。本文将结合Cer - 1 - P在调节细胞内Cer水平方面的可能作用对这些结果进行讨论。

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