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磷脂酸对磷脂酶C-β(1)活性的调节

Regulation of phospholipase C-beta(1) activity by phosphatidic acid.

作者信息

Litosch I

机构信息

Department of Molecular and Cellular Pharmacology, University of Miami School of Medicine, Miami, Florida 33101, USA.

出版信息

Biochemistry. 2000 Jul 4;39(26):7736-43. doi: 10.1021/bi000022y.

Abstract

The role of phosphatidic acid (PA) in regulating phospholipase C-beta(1) (PLC-beta(1)) activity was determined. PA promoted the binding of PLC-beta(1) to sucrose-loaded unilamellar vesicles (SLUV) containing phosphatidylcholine. PA increased enzymatic activity over a range of Ca(2+) concentrations and reduced the Ca(2+) concentration required for half-maximal stimulation of activity. PA did not affect the apparent K(m) for phosphatidylinositol 4, 5-bisphosphate. Lysophosphatidic acid also enhanced the binding of PLC-beta(1) to SLUV but was less effective in stimulating enzymatic activity. Diacylglycerol, phosphatidylserine, and oleic acid had little effect on activity. Anionic and neutral detergents did not stimulate activity. PA stimulation was relatively independent of acyl chain length. Dipalmitoyl-PA (16:0) was comparable to PA from egg lecithin and dimyristoyl-PA (C14:0) in stimulating activity, while dilauroyl-PA (C12:0) was slightly less effective. A 100 kDa catalytic fragment of PLC-beta(1) lacking amino acid residues C-terminal to His(880) did not bind to PA and was insensitive to stimulation by 7-15 mol % PA. Stimulation of 100 kDa enzymatic activity required 30 mol % PA. PA increased receptor-G protein stimulation of PLC-beta(1) activity in membranes. These results demonstrate that PA stimulates basal and receptor-G protein-regulated PLC-beta(1) activity. PA stimulation occurs through both a C-terminal-dependent and an independent mechanism. The C-terminal-mediated mechanism for stimulation may constitute an important pathway for conferring specific regulation of PLC-beta(1) in response to increases in cellular PA levels.

摘要

确定了磷脂酸(PA)在调节磷脂酶C-β1(PLC-β1)活性中的作用。PA促进PLC-β1与含有磷脂酰胆碱的蔗糖负载单层囊泡(SLUV)结合。在一系列Ca²⁺浓度范围内,PA增加了酶活性,并降低了活性达到半最大刺激所需的Ca²⁺浓度。PA不影响磷脂酰肌醇4,5-二磷酸的表观Km值。溶血磷脂酸也增强了PLC-β1与SLUV的结合,但在刺激酶活性方面效果较差。二酰基甘油、磷脂酰丝氨酸和油酸对活性影响很小。阴离子和中性去污剂不刺激活性。PA刺激相对独立于酰基链长度。二棕榈酰-PA(16:0)在刺激活性方面与来自卵磷脂的PA和二肉豆蔻酰-PA(C14:0)相当,而二月桂酰-PA(C12:0)的效果稍差。缺乏His(880) C端氨基酸残基的100 kDa PLC-β1催化片段不与PA结合,对7 - 15 mol% PA的刺激不敏感。刺激100 kDa酶活性需要30 mol% PA。PA增加了膜中受体-G蛋白对PLC-β1活性的刺激。这些结果表明,PA刺激基础的和受体-G蛋白调节的PLC-β1活性。PA刺激通过C端依赖性和非依赖性机制发生。C端介导的刺激机制可能构成了一条重要途径,用于在细胞PA水平升高时赋予对PLC-β1的特异性调节。

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