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The cytolytic and cytotoxic activities of palytoxin

机译:谷胱甘肽的细胞溶解和细胞毒活性

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Palytoxin (PlTX) is one of the largest compound present in nature and, with its strong ability to modify the normal function of different biological systems, is also classified as one of the most potent biotoxins. Many alterations are triggered by PlTX, directly or indirectly related to its interaction with Na+,K+-ATPase and the consequent conversion of this ion pump into a non-specific cation channel. The resulting perturbation of Na+, K+, Ca2(+) and H+ ion fluxes is the driving force of PlTX-induced cytotoxic events, culminating with system disruption and, finally, cell death. The modifications in the distribution of these ions across the plasma membrane play key roles in the promotion of the PlTX-induced cytolytic and cytotoxic responses. In this scenario, PlTX-specific cytolysis can be part, but might not necessarily represent a unique aspect of the cytotoxic effects of the toxin. Owing to the complex array of responses, some of them being cell-type-specific and/or affected by experimental conditions, the distinction between cytolytic and cytotoxic events becomes ill-defined, but the two responses show distinct features, whose further characterization could contribute to a better understanding of the molecular mechanism of cellular effects induced by PlTX
机译:Palytoxin(PlTX)是自然界中存在的最大化合物之一,并且具有改变不同生物系统正常功能的强大能力,也被列为最有效的生物毒素之一。 PlTX触发了许多改变,直接或间接地与其与Na +,K + -ATPase的相互作用有关,并因此将这种离子泵转变为非特异性阳离子通道。 Na +,K +,Ca2(+)和H +离子通量的最终扰动是PlTX诱导的细胞毒性事件的驱动力,最终导致系统破坏,最后导致细胞死亡。这些离子跨质膜分布的改变在促进PlTX诱导的细胞溶解和细胞毒性反应中起关键作用。在这种情况下,PlTX特异性细胞溶解可能是其中一部分,但不一定代表毒素的细胞毒性作用的独特方面。由于反应的复杂性,其中某些反应是细胞类型特异性的和/或受实验条件影响的,因此细胞溶解事件和细胞毒性事件之间的区别变得不清楚,但是这两种反应显示出不同的特征,其进一步的特征可能有助于更好地了解PlTX诱导的细胞效应的分子机制

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