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海产尾丝虫:磷脂酰胆碱水解磷脂酶C的鉴定及生化特性

Uronema marinum: identification and biochemical characterization of phosphatidylcholine-hydrolyzing phospholipase C.

作者信息

Seo Jung Soo, Kim Moo Sang, Lee Sang Hwan, Kim Ki Hong, Lee Hyung Ho, Jeong Hyun Do, Chung Joon Ki

机构信息

Department of Aquatic Life Medicine, Pukyong National University, Busan 608-737, Republic of Korea.

出版信息

Exp Parasitol. 2005 May;110(1):22-9. doi: 10.1016/j.exppara.2005.01.005.

Abstract

Phosphatidylcholine (PC)-specific phospholipase D (PC-PLD) and phosphatidylcholine (PC)-specific phospholipase C (PC-PLC) activities have been detected in Uronema marinum. Partial purification of PC-PLC revealed that two distinct forms of PC-PLC (named as mPC-PLC and cPC-PLC) were existed in membrane and cytosol fractions. The two PC-PLC enzymes showed the preferential hydrolyzing activity for PC with specific activity of 50.4 for mPC-PLC and 28.3 pmol/min/mg for cPC-PLC, but did not hydrolyze phosphatidylinositol or phosphatidylethanolamine. However, the biochemical characteristics and physiological roles of both enzymes were somewhat different. mPC-PLC had a pH optimum in the acidic region at around, pH 6.0, and required approximately 0.4 mM Ca2+ and 2.5 mM Mg2+ for maximal activity. cPC-PLC had a pH optimum in the neutral region at around, pH 7.0, and required 1.6 mM Ca2+ and 2.5 mM Mg2+ for maximal activity. cPC-PLC, but not mPC-PLC, showed a dose-dependent inhibitory effect on the luminal-enhanced chemiluminescence (CL) responses and the viability of zymosan-stimulated phagocytes of olive flounder, indicating that cPC-PLC may contribute to the parasite evasion against the host immune response. Our results suggest that U. marinum contains PC-PLD as well as two enzymatically distinct PC-PLC enzymes, and that mPC-PLC may play a role in the intercellular multiplication of U. marinum and cPC-PLC acts as a virulence factor, serving to actively disrupt the host defense mechanisms.

摘要

在海产尾丝虫中检测到了磷脂酰胆碱(PC)特异性磷脂酶D(PC-PLD)和磷脂酰胆碱(PC)特异性磷脂酶C(PC-PLC)的活性。PC-PLC的部分纯化显示,膜组分和胞质溶胶组分中存在两种不同形式的PC-PLC(分别命名为mPC-PLC和cPC-PLC)。这两种PC-PLC酶对PC表现出优先水解活性,mPC-PLC的比活性为50.4,cPC-PLC为28.3 pmol/分钟/毫克,但不水解磷脂酰肌醇或磷脂酰乙醇胺。然而,这两种酶的生化特性和生理作用有所不同。mPC-PLC在酸性区域(约pH 6.0)有最佳pH值,最大活性需要约0.4 mM Ca2+和2.5 mM Mg2+。cPC-PLC在中性区域(约pH 7.0)有最佳pH值,最大活性需要1.6 mM Ca2+和2.5 mM Mg2+。cPC-PLC而非mPC-PLC对牙鲆经酵母聚糖刺激的吞噬细胞的管腔增强化学发光(CL)反应和活力表现出剂量依赖性抑制作用,表明cPC-PLC可能有助于寄生虫逃避宿主免疫反应。我们的结果表明,海产尾丝虫含有PC-PLD以及两种酶学性质不同的PC-PLC酶,mPC-PLC可能在海产尾丝虫的细胞间增殖中起作用,而cPC-PLC作为一种毒力因子,可积极破坏宿主防御机制。

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