角蛋白中间丝相互作用的自洽场理论。

Q1 Biochemistry, Genetics and Molecular Biology BMC Biophysics Pub Date : 2013-09-05 DOI:10.1186/2046-1682-6-12
Anna Akinshina, Etienne Jambon-Puillet, Patrick B Warren, Massimo G Noro
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引用次数: 12

摘要

背景:角蛋白是存在于皮肤、头发和指甲中的重要结构蛋白。角蛋白中间丝是角质细胞的主要组成部分,角质细胞是皮肤最外层角质层的不可存活的角质细胞。人们认为角蛋白中间丝的非结构域之间的相互作用是维持皮肤弹性的关键因素。结果:我们建立了一个基于自洽场理论的角蛋白中间丝相互作用模型。中间细丝由带电表面表示,角蛋白的无序末端结构域由接枝到这些表面的带电异聚物表示。我们估计该系统接近电荷补偿点,在此点异质聚合物接枝密度与表面电荷密度相匹配。使用末端结构域的氨基酸分辨率的蛋白质模型,我们发现末端链可以介导角蛋白表面之间的弱吸引力。吸引力的来源是桥接和静电的结合。当系统远离电荷补偿点时,或当添加过量的小离子和/或nmf代表游离氨基酸时,吸引力消失。结论:这些结果与实验观察结果一致,并支持角蛋白丝之间的相互作用以及最终部分含角蛋白组织的弹性特性是由无序末端结构域的物理化学特性和丝间区域介质组成共同控制的观点。
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Self-consistent field theory for the interactions between keratin intermediate filaments.

Background: Keratins are important structural proteins found in skin, hair and nails. Keratin Intermediate Filaments are major components of corneocytes, nonviable horny cells of the Stratum Corneum, the outermost layer of skin. It is considered that interactions between unstructured domains of Keratin Intermediate Filaments are the key factor in maintaining the elasticity of the skin.

Results: We have developed a model for the interactions between keratin intermediate filaments based on self-consistent field theory. The intermediate filaments are represented by charged surfaces, and the disordered terminal domains of the keratins are represented by charged heteropolymers grafted to these surfaces. We estimate the system is close to a charge compensation point where the heteropolymer grafting density is matched to the surface charge density. Using a protein model with amino acid resolution for the terminal domains, we find that the terminal chains can mediate a weak attraction between the keratin surfaces. The origin of the attraction is a combination of bridging and electrostatics. The attraction disappears when the system moves away from the charge compensation point, or when excess small ions and/or NMF-representing free amino acids are added.

Conclusions: These results are in concordance with experimental observations, and support the idea that the interaction between keratin filaments, and ultimately in part the elastic properties of the keratin-containing tissue, is controlled by a combination of the physico-chemical properties of the disordered terminal domains and the composition of the medium in the inter-filament region.

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BMC Biophysics
BMC Biophysics BIOPHYSICS-
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