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小窝蛋白组装体取代一个双层脂膜小叶以组织和弯曲膜。

Caveolin assemblies displace one bilayer leaflet to organize and bend membranes.

作者信息

Doktorova Milka, Daum Sebastian, Reagle Tyler R, Cannon Hannah I, Ebenhan Jan, Neudorf Sarah, Han Bing, Sharma Satyan, Kasson Peter, Levental Kandice R, Bacia Kirsten, Kenworthy Anne K, Levental Ilya

机构信息

Department of Molecular Physiology and Biological Physics, University of Virginia, Charlottesville, VA 22903.

Department of Biochemistry and Biophysics, Stockholm University, Science for Life Laboratory, Solna 171 65, Sweden.

出版信息

Proc Natl Acad Sci U S A. 2025 May 20;122(20):e2417024122. doi: 10.1073/pnas.2417024122. Epub 2025 May 13.

Abstract

Caveolin is a monotopic integral membrane protein, widely expressed in metazoans and responsible for constructing enigmatic membrane invaginations known as caveolae. Recently, the high-resolution structure of a purified human caveolin assembly, the CAV1-8S complex, revealed a unique organization of 11 protomers arranged in a tightly packed, radially symmetric spiral disc. One face and the outer rim of this disc are hydrophobic, suggesting that the complex incorporates into membranes by displacing hundreds of lipids from one leaflet. The feasibility of this unique molecular architecture and its biophysical and functional consequences are currently unknown. Using Langmuir film balance measurements, we find that CAV1-8S is highly surface active, intercalating into lipid monolayers of various compositions. CAV1-8S can also incorporate into preformed bilayers, but only upon removal of phospholipids from the outer-facing leaflet. Atomistic and coarse-grained simulations of biomimetic bilayers support this "leaflet replacement" model and also reveal that CAV1-8S accumulates 40 to 70 cholesterol molecules into a disordered monolayer between the complex and its distal lipid leaflet. We find that CAV1-8S preferentially associates with positively curved membrane surfaces due to its influence on the conformations of distal leaflet lipids, and that these effects laterally sort lipids. Large-scale simulations of multiple caveolin assemblies confirmed their association with large, positively curved membrane morphologies consistent with the shape of caveolae. Further, association with curved membranes regulates the exposure of caveolin residues implicated in protein-protein interactions. Altogether, the unique structure of CAV1-8S imparts unusual modes of membrane interaction with implications for membrane organization, morphology, and physiology.

摘要

小窝蛋白是一种单拓扑整合膜蛋白,在多细胞动物中广泛表达,负责构建被称为小窝的神秘膜内陷结构。最近,一种纯化的人小窝蛋白组装体CAV1 - 8S复合物的高分辨率结构揭示了11个原体以紧密堆积、径向对称的螺旋盘形式排列的独特结构。该盘的一个面和外缘是疏水的,这表明该复合物通过从一个小叶中置换数百个脂质而整合到膜中。这种独特分子结构的可行性及其生物物理和功能后果目前尚不清楚。通过朗缪尔膜天平测量,我们发现CAV1 - 8S具有高度表面活性,可插入各种组成的脂质单层中。CAV1 - 8S也可以整合到预先形成的双层膜中,但前提是要从外侧小叶中去除磷脂。仿生双层膜的原子和粗粒度模拟支持这种“小叶置换”模型,并且还揭示CAV1 - 8S在复合物与其远端脂质小叶之间的无序单层中积累40至70个胆固醇分子。我们发现,由于CAV1 - 8S对远端小叶脂质构象的影响,它优先与正弯曲的膜表面结合,并且这些作用会横向分选脂质。多个小窝蛋白组装体的大规模模拟证实了它们与与小窝形状一致的大的、正弯曲的膜形态的结合。此外,与弯曲膜的结合调节了与蛋白质 - 蛋白质相互作用有关的小窝蛋白残基暴露。总之,CAV1 - 8S的独特结构赋予了与膜相互作用的异常模式,对膜的组织、形态和生理学具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d35/12107156/c8542713a039/pnas.2417024122fig01.jpg

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