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在调控李斯特菌溶血素 O 孔形成过程中,胆固醇依赖性相互作用和胆固醇介导的脂质相异质性的纠缠作用。

Entangling roles of cholesterol-dependent interaction and cholesterol-mediated lipid phase heterogeneity in regulating listeriolysin O pore-formation.

机构信息

Department of Biological Sciences, Indian Institute of Science Education and Research Mohali, Sector 81, SAS Nagar, Manauli, Mohali, Punjab 140306, India.

Department of Molecular Biology and Nanobiotechnology, National Institute of Chemistry, Hajdrihova 19 1000 Ljubljana, Slovenia.

出版信息

Biochem J. 2024 Oct 2;481(19):1349-1377. doi: 10.1042/BCJ20240184.

Abstract

Cholesterol-dependent cytolysins (CDCs) are the distinct class of β-barrel pore-forming toxins (β-PFTs) that attack eukaryotic cell membranes, and form large, oligomeric, transmembrane β-barrel pores. Listeriolysin O (LLO) is a prominent member in the CDC family. As documented for the other CDCs, membrane cholesterol is essential for the pore-forming functionality of LLO. However, it remains obscure how exactly cholesterol facilitates its pore formation. Here, we show that cholesterol promotes both membrane-binding and oligomerization of LLO. We demonstrate cholesterol not only facilitates membrane-binding, it also enhances the saturation threshold of LLO-membrane association, and alteration of the cholesterol-recognition motif in the LLO mutant (LLOT515G-L516G) compromises its pore-forming efficacy. Interestingly, such defect of LLOT515G-L516G could be rescued in the presence of higher membrane cholesterol levels, suggesting cholesterol can augment the pore-forming efficacy of LLO even in the absence of a direct toxin-cholesterol interaction. Furthermore, we find the membrane-binding and pore-forming abilities of LLOT515G-L516G, but not those of LLO, correlate with the cholesterol-dependent rigidity/ordering of the membrane lipid bilayer. Our data further suggest that the line tension derived from the lipid phase heterogeneity of the cholesterol-containing membranes could play a pivotal role in LLO function, particularly in the absence of cholesterol binding. Therefore, in addition to its receptor-like role, we conclude cholesterol can further facilitate the pore-forming, membrane-damaging functionality of LLO by asserting the optimal physicochemical environment in membranes. To the best of our knowledge, this aspect of the cholesterol-mediated regulation of the CDC mode of action has not been appreciated thus far.

摘要

胆固醇依赖性细胞溶素(CDCs)是一类独特的β-桶状孔形成毒素(β-PFTs),它们攻击真核细胞膜,并形成大的、寡聚的、跨膜β-桶状孔。李斯特菌溶血素 O(LLO)是 CDC 家族中的一个重要成员。正如其他 CDC 所记录的那样,膜胆固醇对于 LLO 的孔形成功能是必不可少的。然而,胆固醇究竟如何促进其孔形成仍然不清楚。在这里,我们表明胆固醇促进 LLO 的膜结合和寡聚化。我们证明胆固醇不仅促进膜结合,还增强了 LLO 与膜结合的饱和阈值,并且在 LLO 突变体(LLOT515G-L516G)中的胆固醇识别基序的改变会损害其孔形成效力。有趣的是,在存在更高的膜胆固醇水平的情况下,LLOT515G-L516G 的这种缺陷可以得到挽救,这表明胆固醇甚至可以在没有毒素-胆固醇直接相互作用的情况下增强 LLO 的孔形成效力。此外,我们发现 LLOT515G-L516G 的膜结合和孔形成能力,但不是 LLO 的膜结合和孔形成能力,与膜脂质双层的胆固醇依赖性刚性/有序性相关。我们的数据进一步表明,来自含有胆固醇的膜的脂质相异质性的线张力可能在 LLO 功能中发挥关键作用,特别是在没有胆固醇结合的情况下。因此,除了其受体样作用外,我们得出结论,胆固醇可以通过在膜中建立最佳物理化学环境来进一步促进 LLO 的孔形成、破坏膜功能。据我们所知,到目前为止,胆固醇介导的 CDC 作用模式调节的这一方面尚未得到重视。

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