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The microsporidian spore invasion tube. The ultrastructure, isolation, and characterization of the protein comprising the tube

机译:微孢子虫孢子入侵管。组成试管的蛋白质的超微结构,分离和表征

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摘要

The extrusion apparatus of the microsporidian parasitic protozoan Nosema michaelis discharges an invasion (or polar) tube with a velocity suitalbe for piercing cells and injecting infective sporoplasm. The tube is composed of a polar tube protein (PTP) which consists of a single, low molecular weight polypeptide slightly smaller than chymotrypsinogen-A. Assembled PTP tubes resist dissociation in sodium dodecyl sulfate and brief exposures in media at extreme ends of the pH range; however, the tubes are reduced by mercaptoethanol and dithiothreitol. When acidified, mercaptoethanol-reduced PTP self- assembles into plastic, two-dimensional monolayers. Dithiothreitol- reduced PTP will not reassemble when acidified. Evidence is presented which indicates that PTP is assembled as a tube within the spore; that the ejected tube has plasticity during sporoplasm passage; and, finally, that the subunits within the tube polymer are bound together, in part, by interprotein disulfide linkages.
机译:微孢子虫寄生虫原虫Nosema michaelis的挤压装置以适合穿刺细胞和注射感染性孢子质的速度排出侵袭(或极地)管。该试管由极管蛋白(PTP)组成,该蛋白由单一的低分子量多肽组成,该多肽比胰凝乳蛋白酶原A稍小。组装好的PTP管在十二烷基硫酸钠中不易解离,并且在pH范围的极端时不会在介质中短暂暴露;但是,通过巯基乙醇和二硫苏糖醇还原管子。酸化后,巯基乙醇还原的PTP自组装成塑料二维单层。酸化二硫苏糖醇还原的PTP不会重新组装。提供的证据表明PTP在孢子内组装成管。射出的管在子质通过过程中具有可塑性;最后,管聚合物中的亚基部分地通过蛋白间二硫键结合在一起。

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