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蝗虫微孢子虫(类蚁微孢子虫)丙酮酸脱氢酶E1亚基的异源表达及线粒体蛋白在无线粒体细胞中的免疫定位

Heterologous expression of pyruvate dehydrogenase E1 subunits of the microsporidium Paranosema (Antonospora) locustae and immunolocalization of the mitochondrial protein in amitochondrial cells.

作者信息

Dolgikh Viacheslav V, Seliverstova Elena V, Naumov Anton M, Senderskiy Igor V, Pavlova Olga A, Beznoussenko Galina V

机构信息

Laboratory of Microbiological Control, All-Russian Institute for Plant Protection, St Petersburg, Pushkin, Russia.

出版信息

FEMS Microbiol Lett. 2009 Apr;293(2):285-91. doi: 10.1111/j.1574-6968.2009.01545.x. Epub 2009 Feb 26.

Abstract

Microsporidia, a large group of fungi-related intracellular parasites, are characterized by drastically reduced metabolism. They possess genes encoding glycolysis components, and the glycerol-phosphate shuttle, but lack mitochondria, Krebs cycle, respiratory chain and pyruvate-converting enzymes, except alpha and beta subunits of E(1) enzyme of pyruvate dehydrogenase (PDH) complex. Here, we have expressed PDH subunits from the microsporidum Paranosema (Antonospora) locustae in Escherichia coli. Western blot analysis with antibodies raised against recombinant proteins has revealed their specific accumulation in mature spores of P. locustae but not in the intracellular development stages. Two subunits were coprecipitated as a single heterooligomeric complex by anti-alpha or anti-beta PDH antibodies. Ultracentrifugation of spore homogenate has shown the presence of PDH in the soluble fraction. Relocalization of the mitochondrial protein in microsporidial spore cytoplasm was confirmed by immunoelectron microscopy of ultrathin cryosections with affinity-purified anti-alpha PDH antibodies. On cryosections, parasite enzyme was found partly associated with the cytoplasmic side of ER and other intraspore membranes, suggesting that electrons might be transferred to any membrane acceptor and finally to oxygen in the parasite cell.

摘要

微孢子虫是一大类与真菌相关的细胞内寄生虫,其特点是代谢大幅降低。它们拥有编码糖酵解成分和磷酸甘油穿梭系统的基因,但缺乏线粒体、三羧酸循环、呼吸链和丙酮酸转化酶,不过丙酮酸脱氢酶(PDH)复合体的E(1)酶的α和β亚基除外。在此,我们在大肠杆菌中表达了来自蝗虫微孢子虫(Paranosema (Antonospora) locustae)的PDH亚基。用针对重组蛋白产生的抗体进行的蛋白质免疫印迹分析表明,它们在蝗虫微孢子虫的成熟孢子中特异性积累,而在细胞内发育阶段则没有。抗α或抗β PDH抗体将两个亚基共沉淀为单一的异源寡聚复合体。对孢子匀浆进行超速离心显示,PDH存在于可溶部分。用亲和纯化的抗α PDH抗体对超薄冷冻切片进行免疫电子显微镜检查,证实了线粒体蛋白在微孢子虫孢子细胞质中的重新定位。在冷冻切片上,发现寄生虫酶部分与内质网和其他孢子内膜的细胞质侧相关联,这表明电子可能被转移到任何膜受体,最终在寄生虫细胞中转移到氧气。

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