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'Hard' and 'soft' principles defining the structure, function and regulation of keratin intermediate filaments

机译:“硬”和“软”原理定义了角蛋白中间丝的结构,功能和调节

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摘要

Keratins make up the largest subgroup of intermediate filament proteins and represent the most abundant proteins in epithelial cells. They exist as highly dynamic networks of cytoplasmic 10-12 nm filaments that are obligate heteropolymers involving type I and type 11 keratins. The primary function of keratins is to protect epithelial cells from mechanical and nonmechanical stresses that result in cell death. Other emerging functions include roles in cell signaling, the stress response and apoptosis, as well as unique roles that are keratin specific and tissue specific. The role of keratins in a number of human skin, hair, ocular, oral and liver diseases is now established and meshes well with the evidence gathered from transgenic mouse models. The phenotypes associated with defects in keratin proteins are subject to significant modulation by functional redundancy within the family and modifier genes as well. Keratin filaments undergo complex regulation involving post-translational modifications and interactions with self and with various classes of associated proteins.
机译:角蛋白构成中间丝蛋白的最大子组,代表上皮细胞中最丰富的蛋白。它们作为细胞质10-12 nm细丝的高动态网络存在,这些细丝是涉及I型和11型角蛋白的专性杂聚物。角蛋白的主要功能是保护上皮细胞免受导致细胞死亡的机械和非机械应力。其他新兴功能包括细胞信号传导,应激反应和细胞凋亡中的作用,以及角蛋白和组织特异性的独特作用。现在已经确定了角蛋白在许多人类皮肤,头发,眼,口腔和肝脏疾病中的作用,并与从转基因小鼠模型收集的证据很好地吻合。与角蛋白蛋白质缺陷相关的表型也受到家族和修饰基因内功能冗余的显着调节。角蛋白丝经历复杂的调节,包括翻译后修饰以及与自身以及与各种相关蛋白的相互作用。

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