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在盘基网柄菌中,孢子外壁的形成和适时的孢子形成依赖于纤维素。

Spore coat formation and timely sporulation depend on cellulose in Dictyostelium.

作者信息

Zhang P, McGlynn A C, Loomis W F, Blanton R L, West C M

机构信息

Dept. of Anatomy and Cell Biology, University of Florida College of Medicine, Box 100235, 1600 SW Archer Road, Gainesville, FL 32610-0235, USA.

出版信息

Differentiation. 2001 Mar;67(3):72-9. doi: 10.1046/j.1432-0436.2001.067003072.x.

Abstract

Cellulose is a major component of the extracellular coat that surrounds the terminally-differentiated spore of Dictyostelium. It is sandwiched between two layers of proteins that derive from prespore vesicles by exocytosis. Strains unable to synthesize cellulose due to null mutations in the gene encoding the catalytic subunit of cellulose synthase (dcsA) failed to make detergent-resistant spores but produced small, highly refractile, round spore-like cells up to a day late. Although these cells resembled spores in appearance, they were unstable, only transiently ellipsoid in shape, and sensitive to hypo-osmotic shock, drying, or detergents. Differentiation of these pseudo-spores was induced in the normal time frame by activation of the cAMP-dependent protein kinase or co-development with wild type cells, and coat proteins were secreted by the dcsA-null cells at the same time as wild type cells. A substantial fraction of secreted coat proteins was loosely associated with the surface of the mutant cells, resembling the precoat posited to form early during normal sporulation. Transmission electron microscopy revealed that the precoat had little ultrastructural organization in the absence of cellulose. Thus, cellulose in the coat appears to be required for the organization of the pre-coat precursors as well as the stability, dormancy, and shape of the spore.

摘要

纤维素是包围盘基网柄菌终末分化孢子的细胞外被的主要成分。它夹在两层通过胞吐作用从芽孢前体小泡衍生而来的蛋白质之间。由于编码纤维素合酶催化亚基(dcsA)的基因发生无效突变而无法合成纤维素的菌株,无法产生抗去污剂的孢子,但会产生小的、高度折射的、圆形的孢子样细胞,最多延迟一天出现。尽管这些细胞在外观上类似于孢子,但它们不稳定,形状只是短暂的椭圆形,并且对低渗休克、干燥或去污剂敏感。这些假孢子的分化在正常时间框架内通过激活环磷酸腺苷依赖性蛋白激酶或与野生型细胞共同发育诱导产生,并且dcsA基因缺失的细胞与野生型细胞同时分泌包被蛋白。相当一部分分泌的包被蛋白与突变细胞表面松散结合,类似于正常孢子形成早期假定形成的前包被。透射电子显微镜显示,在没有纤维素的情况下,前包被几乎没有超微结构组织。因此,包被中的纤维素似乎是前包被前体的组织以及孢子的稳定性、休眠和形状所必需的。

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