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美利奴羊毛皮质中角蛋白中间纤维和基质的排列。

Arrangement of trichokeratin intermediate filaments and matrix in the cortex of Merino wool.

机构信息

AgResearch, Research Centre, Cnr Springs Rd & Gerald Street, Lincoln, New Zealand.

出版信息

J Struct Biol. 2011 Jan;173(1):29-37. doi: 10.1016/j.jsb.2010.08.009. Epub 2010 Aug 21.

Abstract

Tomograms of transverse sections of Merino wool fibers obtained from fleeces differing in fiber curvature were reconstructed from image series collected using a 300kV transmission electron microscope. Trichokeratin intermediate filaments (IFs) from the ortho-, para- and mesocortices were modeled from the tomograms. IFs were predominantly arranged in left-handed concentric helices with the relative angle of IFs increasing progressively from the center to the periphery of orthocortex macrofibrils. The median increase in IF angle between adjacent IFs between the center and periphery was 2.5°. The length of one turn of the helical path of an IF was calculated to be approximately 1μm for an IF tilted at 30° and positioned 100nm from the macrofibril center. With the exception of one paracortex macrofibril that weakly resembled an orthocortex macrofibril, all para- and mesocortex macrofibrils modeled had a parallel arrangement of the IFs, with a more ordered arrangement found in the mesocortex. Within the limited sample set, there appeared to be no significant relationship between IF angle and fiber curvature. We examined the matrix/IF ratio (in the form of proportion of matrix to one IF, calculated from IF center-to-center distance and IF diameter) for 28 macrofibrils used for modeling. The proportion of matrix was significantly different in the different cortex cell types, with paracortex having the most (0.61), orthocortex having the least (0.42), and mesocortex being intermediate (0.54). Fibers of different crimp type (high, medium or low crimp) were not significantly different from each other with respect to matrix proportion.

摘要

从纤维曲率不同的羊毛纤维中获得的横向切片体层扫描图像系列使用 300kV 透射电子显微镜进行收集,并对其进行重建。从中切皮层、正切皮层和偏切皮层获得的角蛋白中间丝(IF)从断层扫描中进行建模。IF 主要以左手同心螺旋排列,IF 的相对角度从正切皮层宏观纤维的中心向周边逐渐增加。在中心和周边之间,相邻 IF 之间 IF 角度的中位数增加了 2.5°。对于倾斜 30°且距宏观纤维中心 100nm 处的 IF,计算出螺旋路径的一转的长度约为 1μm。除了一个弱类似于正切皮层宏观纤维的偏切皮层宏观纤维外,建模的所有偏切皮层和偏切皮层宏观纤维都具有 IF 的平行排列,偏切皮层的排列更为有序。在有限的样本集中,IF 角度和纤维曲率之间似乎没有明显的关系。我们检查了用于建模的 28 个宏观纤维的 IF 与基质的比例(以基质与一个 IF 的比例的形式表示,从 IF 中心到中心的距离和 IF 直径计算得出)。不同皮层细胞类型的基质比例有显著差异,偏切皮层最多(0.61),正切皮层最少(0.42),偏切皮层居中(0.54)。不同卷曲类型(高、中或低卷曲)的纤维在基质比例方面彼此之间没有显著差异。

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