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底物在决定蛋白激酶C激活的磷脂特异性中的作用。

Role of substrate in determining the phospholipid specificity of protein kinase C activation.

作者信息

Bazzi M D, Nelsestuen G L

机构信息

Department of Biochemistry, University of Minnesota, St. Paul 55108.

出版信息

Biochemistry. 1987 Aug 11;26(16):5002-8. doi: 10.1021/bi00390a018.

Abstract

The phospholipid selectivity of protein kinase C (PKC) activation was examined by using two substrates, histone and a random copolymer of lysine and serine [poly(lysine, serine)] (PLS), plus phospholipids provided as vesicles or as Triton-mixed micelle preparations. The results indicated that substrate-phospholipid interaction was an essential component of PKC activation and that many in vitro properties of PKC activation are attributable to this interaction. The substrate histone interacted with phospholipid-Triton mixed micelles containing phosphatidylserine (PS), but not with those containing phosphatidylinositol (PI) or phosphatidylglycerol (PG). In direct correlation, only PS-Triton mixed micelles were effective in supporting PKC activity. Also, the minimum PS composition (4 mol % in Triton) required to induce significant histone-PS interaction coincided with the minimum composition required for phosphorylation of histones. Moreover, the PS composition required for maximum activity varied with the histone concentration of the reaction. In contrast to histone, PLS interacted with phospholipid-Triton mixed micelles containing either PS, PI, or PG, and all these mixed micelles supported the phosphorylation of PLS. In fact, by selection of appropriate experimental conditions (e.g., concentration of substrate and phospholipid), any of the three mixed micelles could appear the most effective in supporting PKC activity. Phospholipid vesicles containing PS, PG, or PI were found to interact with both histone and PLS and to support the activity of PKC. Physical properties of the solution and conditions used for preparation of phospholipid vesicles had considerable influence on PKC activation. At high phospholipid concentrations, vesicles containing PS, PI, or PG supported the activity of PKC to essentially the same level, provided that the physical differences among the phospholipid vesicles were minimized.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过使用两种底物(组蛋白和赖氨酸与丝氨酸的无规共聚物[聚(赖氨酸,丝氨酸)](PLS))以及以囊泡或Triton混合胶束制剂形式提供的磷脂,研究了蛋白激酶C(PKC)激活的磷脂选择性。结果表明,底物 - 磷脂相互作用是PKC激活的重要组成部分,并且PKC激活的许多体外特性可归因于这种相互作用。底物组蛋白与含有磷脂酰丝氨酸(PS)的磷脂 - Triton混合胶束相互作用,但不与含有磷脂酰肌醇(PI)或磷脂酰甘油(PG)的混合胶束相互作用。直接相关的是,只有PS - Triton混合胶束能有效支持PKC活性。此外,诱导显著组蛋白 - PS相互作用所需的最低PS组成(Triton中4摩尔%)与组蛋白磷酸化所需的最低组成一致。而且,最大活性所需的PS组成随反应中组蛋白浓度而变化。与组蛋白相反,PLS与含有PS、PI或PG的磷脂 - Triton混合胶束相互作用,并且所有这些混合胶束都支持PLS的磷酸化。实际上,通过选择合适的实验条件(例如底物和磷脂的浓度),三种混合胶束中的任何一种在支持PKC活性方面都可能显得最有效。发现含有PS、PG或PI的磷脂囊泡与组蛋白和PLS都相互作用,并支持PKC的活性。溶液的物理性质和用于制备磷脂囊泡的条件对PKC激活有相当大的影响。在高磷脂浓度下,只要磷脂囊泡之间的物理差异最小化,含有PS、PI或PG的囊泡支持PKC活性的水平基本相同。(摘要截断于250字)

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