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Ultrastructural characterization of peptide-induced membrane fusion and peptide self-assembly in the lipid bilayer.

机译:脂质双层中肽诱导的膜融合和肽自组装的超微结构表征。

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摘要

The peptide sequence B18, derived from the membrane-associated sea urchin sperm protein bindin, triggers fusion between lipid vesicles. It exhibits many similarities to viral fusion peptides and may have a corresponding function in fertilization. The lipid-peptide and peptide-peptide interactions of B18 are investigated here at the ultrastructural level by electron microscopy and x-ray diffraction. The histidine-rich peptide is shown to self-associate into two distinctly different supramolecular structures, depending on the presence of Zn(2+), which controls its fusogenic activity. In aqueous buffer the peptide per se assembles into beta-sheet amyloid fibrils, whereas in the presence of Zn(2+) it forms smooth globular clusters. When B18 per se is added to uncharged large unilamellar vesicles, they become visibly disrupted by the fibrils, but no genuine fusion is observed. Only in the presence of Zn(2+) does the peptide induce extensive fusion of vesicles, which is evident from their dramatic increase in size. Besides these morphological changes, we observed distinct fibrillar and particulate structures in the bilayer, which are attributed to B18 in either of its two self-assembled forms. We conclude that membrane fusion involves an alpha-helical peptide conformation, which can oligomerize further in the membrane. The role of Zn(2+) is to promote this local helical structure in B18 and to prevent its inactivation as beta-sheet fibrils.
机译:源自膜相关海胆精子蛋白结合蛋白的肽序列B18触发脂质小泡之间的融合。它与病毒融合肽表现出许多相似性,并且在受精中可能具有相应的功能。在此,通过电子显微镜和X射线衍射在超微结构水平上研究了B18的脂-肽和肽-肽相互作用。富含组氨酸的肽显示可自我缔合成两个截然不同的超分子结构,具体取决于控制其融合活性的Zn(2+)的存在。在水性缓冲液中,肽本身组装成β-折叠淀粉样蛋白原纤维,而在Zn(2+)存在的情况下,它会形成光滑的球形簇。当将B18本身添加到不带电的大单层囊泡中时,它们会明显被原纤维破坏,但未观察到真正的融合。只有在Zn(2+)的存在下,该肽才诱导囊泡的广泛融合,这从其大小的急剧增加中可以明显看出。除了这些形态变化外,我们还在双层中观察到了不同的原纤维和颗粒结构,这归因于B18的两种自组装形式。我们得出结论,膜融合涉及α-螺旋肽构象,它可以进一步在膜中寡聚。 Zn(2+)的作用是促进B18中的这种局部螺旋结构,并防止其作为β-折叠原纤维而失活。

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