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嗜热四膜虫中间丝蛋白(一种49K蛋白)参与口腔形态发生。

Involvement of Tetrahymena intermediate filament protein, a 49K protein, in the oral morphogenesis.

作者信息

Numata O, Hirono M, Watanabe Y

出版信息

Exp Cell Res. 1983 Oct;148(1):207-20. doi: 10.1016/0014-4827(83)90200-8.

Abstract

To study the biological function of Tetrahymena intermediate-type filament protein (a 49K protein), we examined the immunofluorescence localization of 49K protein within Tetrahymena cells. The results showed that the immunofluorescence was localized in the oral apparatus, mitochondria and mucocysts. Among them, the fluorescence in the oral apparatus was of high interest in its unique region and vicissitude in the cell cycle: a tau-shaped region of the oral apparatus intensely fluoresced during interphase, but the fluorescence completely disappeared during dividing phase. The tau-shaped region corresponded to 'posterior connectives' and the root part of 'deep fiber', to the conjunction parts of microtubule bundles. In the those parts, there was electron-dense material in the microtubule bundles. Hence, it is conceivable that 49K protein corresponds to the dense material and has a function of microtubule bundle conjunction. On the other hand, disappearance of immunofluorescence from the old oral apparatus of most dividing cells reflected the oral apparatus regression and remodelling which have been known as necessary sequential events in the cell cycle. We observed that oral fluorescence disappeared concurrently with the onset of oral regression and of constriction of division furrow, whereas at a late dividing stage immunofluorescence began to appear simultaneously in both new and old oral apparatus. Thus, the 49K protein may play a crucial role(s) not only in the morphogenesis of oral primordia but also in the transient morphogenesis in the old oral system.

摘要

为了研究四膜虫中间丝蛋白(一种49K蛋白)的生物学功能,我们检测了49K蛋白在四膜虫细胞内的免疫荧光定位。结果显示,免疫荧光定位于口器、线粒体和黏液泡中。其中,口器中的荧光因其独特的区域以及在细胞周期中的变化而备受关注:口器的一个tau形区域在间期强烈荧光,但在分裂期荧光完全消失。该tau形区域对应于“后连接部”和“深纤维”的根部,即微管束的连接部分。在这些部位,微管束中有电子致密物质。因此,可以推测49K蛋白对应于致密物质并具有微管束连接的功能。另一方面,大多数分裂细胞的旧口器免疫荧光消失反映了口器退化和重塑,这是细胞周期中已知的必要连续事件。我们观察到口器荧光在口器退化和分裂沟收缩开始时同时消失,而在分裂后期,免疫荧光开始同时在新、旧口器中出现。因此,49K蛋白可能不仅在口原基的形态发生中,而且在旧口器系统的短暂形态发生中都起着关键作用。

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