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Membrane Curvature Trans-Membrane Area Asymmetry Budding Fission and Organelle Geometry

机译:膜曲率跨膜面积不对称萌芽裂变和细胞器几何形状

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摘要

In biology, the modern scientific fashion is to mostly study proteins. Much less attention is paid to lipids. However, lipids themselves are extremely important for the formation and functioning of cellular membrane organelles. Here, the role of the geometry of the lipid bilayer in regulation of organelle shape is analyzed. It is proposed that during rapid shape transition, the number of lipid heads and their size (i.e., due to the change in lipid head charge) inside lipid leaflets modulates the geometrical properties of organelles, in particular their membrane curvature. Insertion of proteins into a lipid bilayer and the shape of protein trans-membrane domains also affect the trans-membrane asymmetry between surface areas of luminal and cytosol leaflets of the membrane. In the cases where lipid molecules with a specific shape are not predominant, the shape of lipids (cylindrical, conical, or wedge-like) is less important for the regulation of membrane curvature, due to the flexibility of their acyl chains and their high ability to diffuse.
机译:在生物学中,现代科学时尚是大多数研究蛋白质。对脂质的注意力不那么关注。然而,脂质本身对于细胞膜细胞器的形成和运作非常重要。这里,分析了脂双层的几何形状在细胞器形状调节中的作用。提出,在快速形状过渡期间,脂质叶片内脂质头及其尺寸(即,由于脂头电荷的变化)调节细胞器的几何特性,特别是它们的膜曲率。将蛋白质插入脂质双层和蛋白质跨膜结构域的形状也影响膜的表面积与膜的表面积之间的横膜不对称性。在具有特定形状的脂质分子不是主要的情况下,由于其酰基链的灵活性及其高能力,脂质(圆柱形,圆锥形或楔形)的形状对膜曲率的调节不太重要弥漫。

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