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首页> 外文期刊>Current Opinion in Cell Biology >Intermediate filament mechanics in vitro and in the cell: from coiled coils to filaments, fibers and networks
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Intermediate filament mechanics in vitro and in the cell: from coiled coils to filaments, fibers and networks

机译:体外和细胞内中级细丝力学:从卷曲的线圈到细丝,纤维和网络

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摘要

Intermediate filament proteins form filaments, fibers and networks both in the cytoplasm and the nucleus of metazoan cells. Their general structural building plan accommodates highly varying amino acid sequences to yield extended dimeric alpha-helical coiled coils of highly conserved design. These 'rod' particles are the basic building blocks of intrinsically flexible, filamentous structures that are able to resist high mechanical stresses, that is, bending and stretching to a considerable degree, both in vitro and in the cell. Biophysical and computer modeling studies are beginning to unfold detailed structural and mechanical insights into these major supramolecular assemblies of cell architecture, not only in the 'test tube' but also in the cellular and tissue context.
机译:中间丝蛋白在后生动物细胞质和细胞核中形成丝,纤维和网络。它们的总体结构设计方案可容纳高度变化的氨基酸序列,以产生高度保守的扩展二聚体α-螺旋卷曲螺旋。这些“棒”粒子是本质上柔软的丝状结构的基本构建基,它们能够在体外和细胞中抵抗较高的机械应力,即在相当大的程度上弯曲和拉伸。生物物理和计算机建模研究开始在细胞结构的这些主要超分子组装中展开详细的结构和力学见解,不仅在“试管”中,而且还在细胞和组织中。

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