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Interdisciplinary Synergy to Reveal Mechanisms of Annexin-Mediated Plasma Membrane Shaping and Repair

机译:跨学科的协同作用揭示膜联蛋白介导的血浆膜形成和修复机制。

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摘要

The plasma membrane surrounds every single cell and essentially shapes cell life by separating the interior from the external environment. Thus, maintenance of cell membrane integrity is essential to prevent death caused by disruption of the plasma membrane. To counteract plasma membrane injuries, eukaryotic cells have developed efficient repair tools that depend on Ca - and phospholipid-binding annexin proteins. Upon membrane damage, annexin family members are activated by a Ca influx, enabling them to quickly bind at the damaged membrane and facilitate wound healing. Our recent studies, based on interdisciplinary research synergy across molecular cell biology, experimental membrane physics, and computational simulations show that annexins have additional biophysical functions in the repair response besides enabling membrane fusion. Annexins possess different membrane-shaping properties, allowing for a tailored response that involves rapid bending, constriction, and fusion of membrane edges for resealing. Moreover, some annexins have high affinity for highly curved membranes that appear at free edges near rupture sites, a property that might accelerate their recruitment for rapid repair. Here, we discuss the mechanisms of annexin-mediated membrane shaping and curvature sensing in the light of our interdisciplinary approach to study plasma membrane repair.
机译:质膜围绕着每个单个细胞,并通过将内部环境与外部环境分隔开来,从而基本影响了细胞的寿命。因此,维持细胞膜完整性对于防止由质膜破坏引起的死亡是必不可少的。为了抵消质膜损伤,真核细胞已开发出有效的修复工具,该修复工具依赖于Ca-和磷脂结合膜联蛋白。膜受损时,膜联蛋白家族成员会被Ca大量涌入激活,从而使它们能够迅速结合在受损的膜上并促进伤口愈合。我们最近的研究基于跨分子细胞生物学,实验膜物理学和计算模拟的跨学科研究协同作用,表明膜联蛋白除了能够进行膜融合以外,在修复反应中还具有其他生物物理功能。膜联蛋白具有不同的膜整形特性,可以进行定制的响应,包括快速弯曲,收缩和融合膜边缘以进行重新密封。此外,一些膜联蛋白对出现在破裂部位附近自由边缘的高度弯曲的膜具有高度亲和力,这一特性可能会加速其募集以进行快速修复。在这里,我们讨论跨膜质膜修复研究的跨学科方法,讨论膜联蛋白介导的膜形成和曲率传感的机制。

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