Bacterial Phosphatidylinositol‐Specific Phospholipases C as Membrane‐Attacking Agents and Tools for Research on GPI‐Anchored Proteins

H. Ikezawa
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引用次数: 1

Abstract

Bacterial phosphatidylinositol‐specific phospholipases C have been shown not only to cause breakdown of phosphatidylinositol but also to release GPI‐anchored proteins from the plasma membranes of eucaryotes. Several enzymes in this group have been sequenced by cloning genomic DNA, and the enzymes of Bacillus cereus and Listeria monocytogenes were analyzed for their structures by X‐ray crystallography. In the active sites of enzymes from Bacillus genera and L. monocytogenes, the roles of component amino acid residues in catalysis have been mostly clarified. The enzyme of Bacillus thuringiensis exhibited cytotoxicity against some cultivated cells. The enzyme of L. monocytogenes was shown to contribute to listerial infection of epithelial cells and macrophages as a virulence factor cooperating with other factors such as listeriolysin O and phosphatidylcholine‐preferring phospholipase C. Recently, this enzyme proved to stimulate the signal‐transduction system of host cells in listeriosis. The requirements for effective utilization of bacterial phosphatidylinositol‐specific phospholipases C should be considered in research on GPI‐anchored proteins, cellular transduction, and so forth, given the unique properties of these enzymes.
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细菌磷脂酰肌醇特异性磷脂酶C作为膜攻击剂和研究GPI锚定蛋白的工具
细菌磷脂酰肌醇特异性磷脂酶C已被证明不仅能导致磷脂酰肌醇的分解,还能从真核生物的质膜上释放GPI锚定蛋白。通过克隆基因组DNA对该组酶进行了测序,并用X射线晶体学分析了蜡样芽孢杆菌和单核增生李斯特菌的酶的结构。在芽孢杆菌属和单核增生乳杆菌的酶活性位点中,氨基酸残基的催化作用已基本阐明。苏云金芽孢杆菌酶对部分培养细胞表现出细胞毒性。单核增生乳杆菌酶作为一种毒力因子,与李斯特菌溶素O和磷脂酰胆碱偏好磷脂酶c等其他因子协同作用,参与上皮细胞和巨噬细胞的李斯特菌感染。最近,该酶被证明在李斯特菌病中刺激宿主细胞的信号转导系统。考虑到细菌磷脂酰肌醇特异性磷脂酶C的独特性质,在研究GPI锚定蛋白、细胞转导等方面应考虑有效利用这些酶的要求。
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Use of a Novel Peripheral Biomarker, Urine Trans, Trans, Muconic Acid, for Benzene Toxicity Monitoring Bacterial Phosphatidylinositol‐Specific Phospholipases C as Membrane‐Attacking Agents and Tools for Research on GPI‐Anchored Proteins Special Section on Bacterial Phospholipases C as Exotoxins Biologically Active Polypeptides of Anemonia sulcata—and of Other Sea Anemones—Tools in the Study of Exitable Membranes The Bacterial Zinc‐Metallophospholipases C
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