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角蛋白纤维的原纤维中的螺旋扭曲方向为左手性。

Helical twist direction in the macrofibrils of keratin fibres is left handed.

机构信息

Food & Bio-based Products, AgResearch, Lincoln Research Centre, Lincoln, New Zealand.

Food & Bio-based Products, AgResearch, Lincoln Research Centre, Lincoln, New Zealand; Department Power Electrical and Electronic Engineering, Brno, Czechia.

出版信息

J Struct Biol. 2019 Jun 1;206(3):345-348. doi: 10.1016/j.jsb.2019.04.007. Epub 2019 Apr 6.

Abstract

Macrofibrils, the main structural features within the cortical cells of mammalian hair shafts, are long composite bundles of keratin intermediate filaments (KIFs) embedded in a matrix of keratin-associated proteins. The KIFs can be helically arranged around the macrofibril central axis, making a cylinder within which KIF helical angle relative to macrofibril axis increases approximately linearly from macrofibril centre to edge. Mesophase-based self-assembly has been implicated in the early formation of macrofibrils, which first appear as liquid-crystal tactoids in the bulb of hair follicles. Formation appears to be driven initially by interactions between pre-keratinized KIFs. Differences in the nature of these KIF-KIF interactions could result in all macrofibrils being internally twisted in a single handedness, or a 50:50 mixture of handedness within each cortical cell. We data-mined 41 electron tomograms containing three-dimensional macrofibril data from previously published studies of hair and wool. In all 644 macrofibrils examined we found that within each tomogram all macrofibrils had the same handedness. We concluded that earlier reports of left- and right-handed macrofibrils were due to artefacts of imaging or data processing. A handedness marker was used to confirm (using re-imaged sections from earlier studies) that, in both human and sheep, all macrofibrils are left-handed around the macrofibril axis. We conclude that this state is universal within mammalian hair. This also supports the conclusion that the origin of macrofibril twist is the expression of chiral twisting forces between adjacent KIFs, rather than mesophase splay and bending forces relaxing to twisting forces acting within a confined space.

摘要

微纤维是哺乳动物毛发皮质细胞的主要结构特征,是由角蛋白中间丝(KIFs)组成的长复合束,嵌入角蛋白相关蛋白基质中。KIF 可以螺旋排列在微纤维的中心轴周围,形成一个圆柱,其中 KIF 的螺旋角相对于微纤维轴从微纤维中心到边缘呈近似线性增加。基于中间相的自组装被认为参与了微纤维的早期形成,微纤维最初出现在毛囊球部的液晶原纤维中。形成似乎最初是由预角蛋白化的 KIF 之间的相互作用驱动的。这些 KIF-KIF 相互作用的性质的差异可能导致所有微纤维都以单一的手性内部扭曲,或者在每个皮质细胞中手性的比例为 50:50。我们从以前关于毛发和羊毛的研究中挖掘了包含三维微纤维数据的 41 个电子断层图像。在我们检查的所有 644 个微纤维中,我们发现每个断层图像中的所有微纤维都具有相同的手性。我们得出结论,以前关于左手性和右手性微纤维的报告是由于成像或数据处理的伪影。使用来自早期研究的重新成像部分作为手性标记来确认(使用重新成像部分),在人和绵羊中,所有微纤维都围绕微纤维轴呈左手性。我们得出结论,这种状态在哺乳动物毛发中是普遍存在的。这也支持了这样的结论,即微纤维扭曲的起源是相邻 KIF 之间手性扭曲力的表达,而不是中间相的扩展和弯曲力在受限空间内松弛到扭曲力。

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