化学
膜
生物物理学
摩尔比
神经酰胺
多孔性
生物化学
细胞膜
膜蛋白
毒素
脂质双层
纤维
臼齿
纳米孔
血浆蛋白结合
脂筏
蛋白质结构
低聚物
摩尔浓度
肿胀 的
作者
Neval Yilmaz,Anastasija Panevska,Kristina Sepčić,Toshihide Kobayashi
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-12-18
卷期号:25 (52): 18141-18149
标识
DOI:10.1021/acs.nanolett.5c05480
摘要
Mushrooms from Pleurotus genus produce unique two-component pore-forming toxins consisting of a lipid-binding aegerolysin protein and a membrane-attack complex/perforin (MACPF) domain-containing protein, pleurotolysin B (PlyB). Here, we investigated the interaction between a well-characterized aegerolysin, ostreolysin A6 (OlyA6), and PlyB on membranes composed of ceramide phosphoethanolamine (CPE) and cholesterol (Chol). The binding of PlyB to OlyA6 induced its oligomerization and the formation of porous structures on the membrane. However, the efficiency of oligomerization depended strongly on the density of membrane-bound OlyA6. High OlyA6 density hindered the oligomerization process, resulting predominantly in arc-shaped oligomers rather than ring-shaped structures. This crowding also impaired the pore formation process. Our results suggest that the association of PlyB with OlyA6 occurs on the membrane surface, and the subsequent oligomerization and pore formation are highly regulated by the OlyA6/PlyB molar ratio, consistent with previous observations of inefficient pore formation at high OlyA6/PlyB molar ratios.
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