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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Guided by curvature: shaping cells by coupling curved membrane proteins and cytoskeletal forces
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Guided by curvature: shaping cells by coupling curved membrane proteins and cytoskeletal forces

机译:通过曲率引导:通过耦合弯曲膜蛋白和细胞骨骼力来形成细胞

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Eukaryote cells have flexible membranes that allow them to have a variety of dynamical shapes. The shapes of the cells serve important biological functions, both for cells within an intact tissue, and during embryogenesis and cellular motility. How cells control their shapes and the structures that they form on their surface has been a subject of intensive biological research, exposing the building blocks that cells use to deform their membranes. These processes have also drawn the interest of theoretical physicists, aiming to develop models based on physics, chemistry and nonlinear dynamics. Such models explore quantitatively different possible mechanisms that the cells can employ to initiate the spontaneous formation of shapes and patterns on their membranes. We review here theoretical work where one such class of mechanisms was investigated: the coupling between curved membrane proteins, and the cytoskeletal forces that they recruit. Theory indicates that this coupling gives rise to a rich variety of membrane shapes and dynamics, while experiments indicate that this mechanism appears to drive many cellular shape changes.
机译:真核生物细胞具有柔性膜,使它们具有各种动力形状。细胞的形状为完整组织内的细胞和胚胎发生和细胞运动中的细胞提供重要的生物功能。细胞如何控制它们的形状和它们在其表面上形成的结构一直是密集的生物学研究的主题,暴露了细胞用于使其膜变形的构建块。这些过程也引起了理论物理学家的兴趣,旨在基于物理,化学和非线性动力学开发模型。这些模型探讨了定量不同的可能机制,细胞可以采用在其膜上发起形状和图案的自发形成。我们在这里审查了一个这样的理论工作,其中调查了一种这样的机制:弯曲膜蛋白和它们募集的细胞骨骼力之间的偶联。理论表明,该耦合产生了丰富的膜形状和动力学,而实验表明该机制似乎驱动许多蜂窝形状变化。

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