首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >The hagfish slime gland thread cell. I. A unique cellular system for the study of intermediate filaments and intermediate filament- microtubule interactions
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The hagfish slime gland thread cell. I. A unique cellular system for the study of intermediate filaments and intermediate filament- microtubule interactions

机译:g鱼粘液腺线细胞。 I.用于研究中间丝和中间丝-微管相互作用的独特细胞系统

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摘要

Thread cell differentiation in the slime gland of the Pacific hagfish Eptatretus stouti has been studied using light microscopy and scanning and transmission electron microscopy. Thread cell differentiation is remarkable in that the life history of the cell is largely dedicated to the production of a single, tapered, cylindrical, highly coiled, and precisely packaged cytoplasmic thread that may attain lengths of 60 cm and diameters approaching 1.5 micron. Each tapered thread, in turn, is comprised almost entirely of large numbers of intermediate filaments (IFs) bundled in parallel. During differentiation of the thread, the IFs become progressively more tightly packed. Various numbers of microtubules (MTs) are found among the bundled IFs during differentiation of the thread but disappear during the latter stages of thread differentiation. Observations of regularly spaced dots in longitudinal bisections of developing threads, diagonal striations in tangential sections of developing threads, and circumferentially oriented, filament-like structures observed at the periphery of developing threads cut in cross section have led us to postulate a helically oriented component(s) wrapped around the periphery of the developing thread. The enormous size of the fully differentiated thread cell, its apparent singular dedication to the production of IFs, the ease of isolating and purifying the threads and IF subunits (see accompanying paper), and the unique position of the hagfish in the phylogenetic scheme of vertebrate evolution all contribute to the attractiveness of the hagfish slime gland thread cell as a potential model system for studying IF subunit synthesis, IF formation from IF subunits, aggregation of IFs into IF bundles and the interaction(s) of IFs and MTs.
机译:已使用光学显微镜以及扫描和透射电子显微镜研究了太平洋长尾fish鱼粘液腺的粘液腺中的线细胞分化。线状细胞的分化是显着的,因为细胞的生命史主要用于生产单根,锥形,圆柱形,高度卷曲且精确包装的细胞质线,其长度可达到60 cm,直径接近1.5微米。每个锥形线又几乎全部由平行捆扎的大量中间丝(IF)组成。在线程区分期间,IF逐渐变得更加紧密。在线程分化过程中,捆绑的IF中发现了各种数量的微管(MT),但在线程分化的后期阶段消失了。在显影线的纵向剖分中观察到规则间隔的点,显影线的切线部分中的对角条纹以及在横截面中切开的显影线外围观察到的沿圆周方向排列的细丝状结构,这使我们提出了一个螺旋方向的成分s)缠绕在显影线的周围。完全分化的线状细胞的巨大尺寸,其对IFs的明显单一贡献,对线和IF亚基的分离和纯化的简便性(参见随附文件)以及,鱼在脊椎动物的系统发育计划中的独特位置进化都有助于哈鱼粘液腺线细胞的吸引力,因为它是研究IF亚基合成,由IF亚基形成IF,将IF聚合成IF束以及IF与MT相互作用的潜在模型系统。

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