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两种磷脂酸选择性磷脂酶A1,即mPA-PLA1α和mPA-PLA1β的生化与分子特性

Biochemical and molecular characterization of two phosphatidic acid-selective phospholipase A1s, mPA-PLA1alpha and mPA-PLA1beta.

作者信息

Hiramatsu Tatsufumi, Sonoda Hirofumi, Takanezawa Yasukazu, Morikawa Rei, Ishida Mayuko, Kasahara Kohji, Sanai Yutaka, Taguchi Ryo, Aoki Junken, Arai Hiroyuki

机构信息

Graduate School of Pharmaceutical Sciences, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

J Biol Chem. 2003 Dec 5;278(49):49438-47. doi: 10.1074/jbc.M213018200. Epub 2003 Sep 8.

Abstract

We have identified a novel phospholipase A1, named mPA-PLA1beta, which is specifically expressed in human testis and characterized it biochemically together with previously identified mPA-PLA1alpha. The sequence of mPAPLA1beta encodes a 460-amino acid protein containing a lipase domain with significant homology to the previously identified phosphatidic acid (PA)-selective PLA1, mPA-PLA1alpha. mPA-PLA1beta contains a short lid and deleted beta9 loop, which are characteristics of PLA1 molecules in the lipase family, and is a member of a subfamily in the lipase family that includes mPA-PLA1alpha and phosphatidylserine-specific PLA1. Both mPA-PLA1beta and mPA-PLA1alpha recombinant proteins exhibited PA-specific PLA1 activity and were vanadate-sensitive. When mPAPLA1beta-expressing cells were treated with bacterial phospholipase D, the cells produced lysophosphatidic acid (LPA). In both mPA-PLA1alpha and beta-expressing cells, most of the PA generated by the phospholipase D (PLD) treatment was converted to LPA, whereas in control cells it was converted to diacylglycerol. When expressed in HeLa cells most mPA-PLA1alpha protein was recovered from the cell supernatant. By contrast, mPA-PLA1beta was recovered almost exclusively from cells. Consistent with this observation, we found that mPA-PLA1beta has higher affinity to heparin than mPA-PLA1alpha. We also found that the membrane-associated mPA-PLA1s were insoluble in solubilization by 1% Triton X-100 and were detected in Triton X-100-insoluble buoyant fractions of sucrose gradients. The present study raises the possibility that production of LPA by mPA-PLA1alpha and -beta occurs on detergent-resistant membrane domains of the cells where they compete with lipid phosphate phosphatase for PA.

摘要

我们鉴定出一种新型磷脂酶A1,命名为mPA-PLA1β,它在人类睾丸中特异性表达,并与先前鉴定的mPA-PLA1α一起进行了生化特性分析。mPA-PLA1β的序列编码一个460个氨基酸的蛋白质,该蛋白质含有一个脂肪酶结构域,与先前鉴定的磷脂酸(PA)选择性磷脂酶A1、mPA-PLA1α具有显著同源性。mPA-PLA1β包含一个短盖子和缺失的β9环,这是脂肪酶家族中磷脂酶A1分子的特征,并且是脂肪酶家族中一个亚家族的成员,该亚家族包括mPA-PLA1α和磷脂酰丝氨酸特异性磷脂酶A1。mPA-PLA1β和mPA-PLA1α重组蛋白均表现出PA特异性磷脂酶A1活性,且对钒酸盐敏感。当用细菌磷脂酶D处理表达mPA-PLA1β的细胞时,细胞产生溶血磷脂酸(LPA)。在表达mPA-PLA1α和β的细胞中,磷脂酶D(PLD)处理产生的大多数PA都转化为LPA,而在对照细胞中则转化为二酰基甘油。当在HeLa细胞中表达时,大多数mPA-PLA1α蛋白从细胞上清液中回收。相比之下,mPA-PLA1β几乎完全从细胞中回收。与这一观察结果一致,我们发现mPA-PLA1β对肝素的亲和力高于mPA-PLA1α。我们还发现,膜相关的mPA-PLA1不溶于1% Triton X-100的增溶作用,并在蔗糖梯度的Triton X-100不溶性漂浮组分中检测到。本研究提出了一种可能性,即mPA-PLA1α和-β产生LPA的过程发生在细胞的抗去污剂膜结构域上,在那里它们与脂质磷酸磷酸酶竞争PA。

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