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海兔毒素诱导红细胞阴离子转运功能改变:代谢影响。

Palytoxin induces functional changes of anion transport in red blood cells: metabolic impact.

机构信息

Organic and Biological Chemistry Department, University of Messina, Italy.

出版信息

J Membr Biol. 2011 Jul;242(1):31-9. doi: 10.1007/s00232-011-9374-6. Epub 2011 Jul 6.

Abstract

Palytoxin (PTX) is classified as one of the most powerful marine biotoxins (of high molecular weight and no protein origin) because it is able to interact strongly with important cellular structures influencing their function in different biological processes. This study of the effects of PTX on red blood cells (RBC) extends the knowledge about its toxicity, which concerns not only the well-known action on Na(+)/K(+)-ATPase but also band 3 protein (B3 or AE1), the role of which is essential for anion transport and for the structure, function, and metabolic integrity of the erythrocyte. The effects of PTX on RBC can be summarized as follows: it alters the anionic flux and seriously compromises not only CO(2) transport but also the metabolic modulation centered on the oxy-deoxy cycle of hemoglobin; it stabilizes the plasma membrane by preventing lipid peroxidation; and its effect does not lead to activation of caspases 3 and 8. From what is reported in steps 2 and 3, and on the basis of the results obtained on hemolysis, methemoglobin levels, and phosphatase activity, an increase of the reducing power of the erythrocytes (RBC) in the presence of PTX clearly emerges. The results have enabled us to outline some metabolic adaptations induced in the RBC by PTX.

摘要

海兔毒素(PTX)被归类为最强大的海洋生物毒素之一(分子量高且非蛋白质来源),因为它能够与重要的细胞结构强烈相互作用,影响它们在不同生物过程中的功能。这项关于 PTX 对红细胞(RBC)影响的研究扩展了其毒性的知识,不仅涉及众所周知的对 Na(+)/K(+)-ATP 酶的作用,还涉及带 3 蛋白(B3 或 AE1),其阴离子转运和红细胞的结构、功能和代谢完整性的作用至关重要。PTX 对 RBC 的影响可以概括为:它改变阴离子通量,严重损害不仅是 CO(2)的运输,还有血红蛋白的氧-脱氧循环为中心的代谢调节;它通过防止脂质过氧化来稳定质膜;并且其作用不会导致半胱天冬酶 3 和 8 的激活。从步骤 2 和 3 中报道的内容以及基于溶血、高铁血红蛋白水平和磷酸酶活性获得的结果,在 PTX 存在下红细胞(RBC)的还原能力明显增加。这些结果使我们能够概述 PTX 诱导的 RBC 中的一些代谢适应。

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