首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Differential binding to phospholipid bilayers modulates membrane-damaging activity of Naja naja atra cardiotoxins
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Differential binding to phospholipid bilayers modulates membrane-damaging activity of Naja naja atra cardiotoxins

机译:与磷脂双层的差异结合调节眼镜蛇眼镜蛇心毒素的膜破坏活性。

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摘要

To address the events that modulate membrane-damaging activity of Naja naja atra cardiotoxins (CTXs), the present study was carried out. It was found that CTX isotoxins showed different activities in inducing leakage of vesicles made of egg yolk phosphatidylcholine (EYPC) dimyristoyl phosphatidic acid (DMPA) or EYPC/egg yolk sphingomyelin (EYSM). Although CTXs had different gross conformations, the toxins showed similar binding affinity for phospholipid vesicles. Topographical contact between toxin molecules and phospholipid vesicles differed for different CTXs as evidenced by fluorescence enhancement of fluorescein-labeled phospholipid. Color transformation of phospholipid/polyrdiacetylene membrane assay revealed that CTX isotoxins were absorbed on lipid bilayers in different manners. Oxidation of Met residues at the tip of loop II indicated that membrane-bound conformation and orientation of CTXs played a vital role in damaging EYPC/EYSM and EYPC/DMPA vesicles, and suggested that an intact loop II was crucial for inducing leakage of EYSM-containing vesicles rather than that of DMPA-containing vesicles. Moreover, CTXs induced markedly hemolysis of cholesterol-depleted erythrocytes. Taken together, our data indicate that, in addition to membrane organization, membrane-bound conformation and interface-inserted mode of CTXs determine the potency of their membrane-damaging activity.
机译:为了解决调节眼镜蛇眼镜蛇心毒素(CTX)的膜破坏活性的事件,进行了本研究。已经发现,CTX异毒素在诱导由蛋黄磷脂酰胆碱(EYPC),二肉豆蔻酰基磷脂酸(DMPA)或EYPC /蛋黄鞘磷脂(EYSM)制成的囊泡的渗漏中表现出不同的活性。尽管CTX具有不同的总体构象,但毒素对磷脂囊泡的结合亲和力相似。对于不同的CTX,毒素分子和磷脂囊泡之间的形貌接触有所不同,这通过荧光素标记的磷脂的荧光增强得以证明。磷脂/聚乙炔膜测定的颜色转换表明,CTX异毒素以不同方式吸收在脂质双层上。环II末端Met残基的氧化表明,CTX的膜结合构象和方向在破坏EYPC / EYSM和EYPC / DMPA囊泡中起着至关重要的作用,并暗示完整的环II对于诱导EYSM-含有小泡,而不是含有DMPA的小泡。此外,CTX诱导胆固醇贫血的红细胞明显溶血。两者合计,我们的数据表明,除了膜的组织,CTX的膜结合构象和界面插入模式还决定了其膜破坏活性的潜力。

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