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含有磷脂酰丝氨酸和底物的膜结构域对于蛋白激酶C的激活可能很重要。

Membrane domains containing phosphatidylserine and substrate can be important for the activation of protein kinase C.

作者信息

Yang L, Glaser M

机构信息

Department of Biochemistry, University of Illinois, Urbana 61801.

出版信息

Biochemistry. 1995 Feb 7;34(5):1500-6. doi: 10.1021/bi00005a005.

Abstract

The relationship between lipid domains and enzyme activity was studied via the direct visualization and quantitation of domains by fluorescence digital imaging microscopy. The substrate used in these experiments was a basic peptide derived from a prominent cellular substrate (MARCKS) of protein kinase C. The MARCKS peptide and phosphatidylserine, which were labeled by two different fluorophores, colocalized into domains in large vesicles (5-10 microns). Increasing the ionic strength disrupted the domains of the MARCKS peptide and phosphatidylserine, and this was accompanied by a decrease in protein kinase C activity. Dansylpolylysine, which inhibits protein kinase C, was similar to the MARCKS peptide in forming domains enriched in phosphatidylserine. The degree of enrichment of the MARCKS peptide in the phosphatidylserine domains decreased proportionally with protein kinase C activity when polylysine was added. Polylysine caused the MARCKS peptide to be displaced from the domains into the nondomain areas of the vesicles. This suggested that binding of the substrate to the vesicles was not the critical factor for protein kinase C activity, but rather it was the organization of the substrate into domains that was related to the activation of the enzyme. Gramicidin, which was chosen to represent a neutral membrane protein, was excluded from the domains with phosphatidylserine, and it had no effect on the enrichment of the domains or the enzyme activity. The results of this study show that the formation of membrane domains can be important for the activation of protein kinase C and the activity can be inhibited by disrupting the domains.

摘要

通过荧光数字成像显微镜对结构域进行直接可视化和定量分析,研究了脂质结构域与酶活性之间的关系。这些实验中使用的底物是一种源自蛋白激酶C的主要细胞底物(MARCKS)的碱性肽。用两种不同荧光团标记的MARCKS肽和磷脂酰丝氨酸共定位于大囊泡(5 - 10微米)中的结构域。增加离子强度会破坏MARCKS肽和磷脂酰丝氨酸的结构域,同时蛋白激酶C活性降低。抑制蛋白激酶C的丹磺酰聚赖氨酸在形成富含磷脂酰丝氨酸的结构域方面与MARCKS肽相似。添加聚赖氨酸时,MARCKS肽在磷脂酰丝氨酸结构域中的富集程度与蛋白激酶C活性成比例下降。聚赖氨酸使MARCKS肽从结构域转移到囊泡的非结构域区域。这表明底物与囊泡的结合不是蛋白激酶C活性的关键因素,而是底物形成结构域与酶的激活有关。选择短杆菌肽作为中性膜蛋白的代表,它被排除在含有磷脂酰丝氨酸的结构域之外,并且对结构域的富集或酶活性没有影响。这项研究的结果表明,膜结构域的形成对蛋白激酶C的激活可能很重要,并且通过破坏结构域可以抑制其活性。

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