首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The effects of lipids on the structure of the eukaryotic cytolysin equinatoxin II: a synchrotron radiation circular dichroism spectroscopic study.
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The effects of lipids on the structure of the eukaryotic cytolysin equinatoxin II: a synchrotron radiation circular dichroism spectroscopic study.

机译:脂质对真核细胞溶血素马鞭毛毒素II结构的影响:同步辐射圆二色性光谱研究。

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摘要

Synchrotron radiation circular dichroism (SRCD) spectroscopy studies of the eukaryotic pore-forming protein equinatoxin II (EqtII) were carried out in solution and in the presence of micelles or small unilamellar vesicles (SUV) of different lipid composition. The SRCD structural data was correlated with calcein leakage from SUV and with partitioning of EqtII to liposomes, and micelles, according to haemolysis assays. The structure of EqtII in water and dodecylphosphocholine micelles as determined by SRCD was similar to the values calculated from crystal and solution structures of the protein, and no changes were observed with the addition of sphingomyelin (SM). SM is required to trigger pore formation in biological and model membranes, but our results suggest that SM alone is not sufficient to trigger dissociation of the N-terminal helix and further structural rearrangements required to produce a pore. Significant changes in conformation of EqtII were detected with unsaturated phospholipid (DOPC) vesicles when SM was added, but not with saturated phospholipids (DMPC), which suggests that not only is membrane curvature important, but also the fluidity of the bilayer. The SRCD data indicated that the EqtII structure in the presence of DOPC:SM SUV represents the 'bound' state and the 'free' state is represented by spectra for DOPC or DOPC:Chol vesicles, which correlates with the high lytic activity for SUV of DOPC:SM. The SRCD results provide insight into the lipid requirements for structural rearrangements associated with EqtII toxicity and lysis.
机译:真核孔形成蛋白equinatoxin II(EqtII)的同步辐射圆二色性(SRCD)光谱研究是在溶液中以及存在不同脂质组成的胶束或小的单层囊泡(SUV)的情况下进行的。根据溶血分析,SRCD的结构数据与钙黄绿素从SUV泄漏以及EqtII分配给脂质体和胶束相关。通过SRCD确定的水和十二烷基磷酸胆碱胶束中EqtII的结构与根据蛋白质的晶体和溶液结构计算得出的值相似,并且在添加鞘磷脂(SM)后未观察到任何变化。需要SM来触发生物膜和模型膜中的孔形成,但是我们的结果表明,仅SM不足以触发N末端螺旋的解离以及产生孔所需的其他结构重排。当添加SM时,用不饱和磷脂(DOPC)囊泡检测到EqtII构象的显着变化,而用饱和磷脂(DMPC)则未检测到,这表明不仅膜曲率很重要,而且双层的流动性也很重要。 SRCD数据表明,存在DOPC:SM SUV时EqtII结构代表“结合”状态,“自由”状态由DOPC或DOPC:Chol囊泡的光谱表示,这与SUV的高裂解活性相关。 DOPC:SM。 SRCD结果提供了对与EqtII毒性和裂解相关的结构重排所需的脂质的见解。

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