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二硫键形成在发育中毛发的中间丝结构转变中的作用。

The role of disulfide bond formation in the structural transition observed in the intermediate filaments of developing hair.

机构信息

Institute of Fundamental Sciences Massey University, Private Bag 11-222, Palmerston North, New Zealand.

出版信息

J Struct Biol. 2012 Oct;180(1):117-24. doi: 10.1016/j.jsb.2012.05.020. Epub 2012 Jun 7.

Abstract

Hair keratin is a composite structure in which intermediate filaments (IF) are embedded in a protein matrix. During the early stages of development in the hair follicle the redox potential is such that the cysteine residues in the IF are maintained in a reduced form. However, at a late stage of development the redox potential changes to produce an oxidizing environment and the IF undergo a structural transition involving both molecular slippage and radial compaction. In our earlier study the changes in the molecular parameters were estimated from knowledge of the sites of artificially induced crosslinks, and it was noted that the changes in these parameters realigned many of the cysteine residues to positions more favorable to disulfide bond formation. As the energy involved in the formation of disulfide bonds is much greater than that of hydrogen bonds or van der Waals interactions the structural transition is likely to be dominated by the requirement that the bonded cysteine residues occur at closely equivalent axial positions. This criterion was used in the present study to obtain more precise values for the molecular parameters in the oxidized fiber than has hitherto been possible. A comparison of the sequences of hair keratins and epidermal keratins suggests that the slippage observed in trichocyte IF during keratinization does not occur in epidermal IF.

摘要

毛发角蛋白是一种复合结构,其中中间丝(IF)嵌入在蛋白质基质中。在毛囊发育的早期阶段,氧化还原电位使得 IF 中的半胱氨酸残基保持还原状态。然而,在发育的后期,氧化还原电位发生变化,产生氧化环境,IF 经历结构转变,包括分子滑移和径向紧缩。在我们早期的研究中,从人工诱导交联的部位推断出分子参数的变化,并注意到这些参数的变化使许多半胱氨酸残基重新排列到更有利于形成二硫键的位置。由于形成二硫键所涉及的能量远远大于氢键或范德华相互作用的能量,因此结构转变很可能主要由要求键合的半胱氨酸残基处于紧密等效的轴向位置来决定。本研究利用这一标准,获得了比以往更精确的氧化纤维分子参数值。对毛发角蛋白和表皮角蛋白序列的比较表明,在角化过程中毛母细胞 IF 中观察到的滑移并不发生在表皮 IF 中。

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