首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Relevance of Fatty Acid Covalently Bound to Escherichia coli α-Hemolysin and Membrane Microdomains in the Oligomerization Process
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Relevance of Fatty Acid Covalently Bound to Escherichia coli α-Hemolysin and Membrane Microdomains in the Oligomerization Process

机译:寡聚过程中共价结合脂肪酸与大肠杆菌α-溶血素和膜微结构域的相关性

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摘要

α-Hemolysin (HlyA) is an exotoxin secreted by some pathogenic strains of Escherichia coli that causes lysis of several mammalian cells, including erythrocytes of different species. HlyA is synthesized as a protoxin, pro-HlyA, which is activated by acylation at two internal lysines Lys-563 and Lys-689. It has been proposed that pore formation is the mechanism of cytolytic activity for this toxin, as shown in experiments with whole cells, planar lipid membranes, and liposomes, but these experiments have yielded conflicting results about the structure of the pore. In this study, HlyA cysteine replacement mutant proteins of amino acids have been labeled with Alexa-488 and Alexa-546. Fluorescence resonance energy transfer measurements, employing labeled toxin bound to sheep ghost erythrocytes, have demonstrated that HlyA oligomerizes on erythrocyte membranes. As the cytotoxic activity is absolutely dependent on acylation, we have studied the role of acylation in the oligomerization, demonstrating that fatty acids are essential in this process. On the other hand, fluorescence resonance energy transfer and the hemolytic activity decrease when the erythrocyte ghosts are cholesterol-depleted, hence indicating the role of membrane microdomains in the clustering of HlyA. Simultaneously, HlyA was found in detergent-resistant membranes. Pro-HlyA has also been found in detergent-resistant membranes, thus demonstrating that the importance of acyl chains in toxin oligomerization is the promotion of protein-protein interaction. These results change the concept of the main role assigned to acyl chain in the targeting of proteins to membrane microdomains.
机译:α-溶血素(HlyA)是大肠杆菌的某些致病菌株分泌的一种外毒素,可导致几种哺乳动物细胞(包括不同物种的红细胞)裂解。 HlyA被合成为一种原毒素,即pro-HlyA,它被两个内部赖氨酸Lys-563和Lys-689酰化激活。如对全细胞,平面脂质膜和脂质体的实验所示,已经提出孔的形成是这种毒素的细胞溶解活性的机制,但是这些实验对孔的结构产生了矛盾的结果。在这项研究中,氨基酸的HlyA半胱氨酸替代突变蛋白已用Alexa-488和Alexa-546标记。荧光共振能量转移测量,采用与羊鬼红细胞结合的标记毒素,已证明HlyA在红细胞膜上寡聚。由于细胞毒性活性绝对依赖于酰化作用,因此我们研究了酰化作用在低聚反应中的作用,表明脂肪酸在此过程中至关重要。另一方面,当贫血的胆固醇消失时,荧光共振能量转移和溶血活性降低,因此表明膜微结构域在HlyA的簇集中的作用。同时,在耐去污剂的膜中发现了HlyA。还已经在耐去污剂的膜中发现了Pro-HlyA,因此证明了酰基链在毒素低聚中的重要性是促进蛋白质-蛋白质相互作用。这些结果改变了在蛋白质靶向膜微结构域中指定给酰基链的主要作用的概念。

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