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蟋蟀微孢子虫的孢子壁和极管蛋白:主要的孢子壁蛋白在孢子挤出前被释放。

The spore wall and polar tube proteins of the microsporidian Nosema grylli: the major spore wall protein is released before spore extrusion.

作者信息

Dolgikh V V, Semenov P B

机构信息

All-Russian Research Institute for Plant Protection, St. Petersburg.

出版信息

Tsitologiia. 2003;45(3):324-9.

Abstract

Incubation of Nosema grylli spores in alkaline--saline solution (10 mM KOH, 170 mM KCl) leads to solubilization of the major spore wall protein of 40 kDa (p40). Both the compounds of this solution are crucial for p40 solubilization. After spore incubation in 170 mM KCl no proteins were released in the medium. In contrast, 10 mM KOH causes a release of many spore proteins but only a small amount of p40. A long storage of spores (over a year) in water or 0.02% sodium azide results in a sharp decrease of p40 content. Specific polyclonal antibodies were obtained by immunization of rabbits with isolated p40. The specificity of serum was confirmed by immunoblotting. IFA showed reliable reaction on the envelopes of sporonts and sporoblasts, whereas only part of spores reacted with antibodies. This distinction may be due to changing surface antigens during spore maturation. Solubilization of p40 under alkaline conditions could be associated with spore extrusion, since a subsequent transfer of spores to neutral solution leads to their discharge. Subsequent wash of discharged spores with 1-3% SDS, 9 M urea and treatment by 100% 2-ME result in solubilization of protein of 56 kDa (p56). The maximum concentration of 2-ME is important for isolation of pure p56. Evidence has been provided that p56 is a protein of N. grylli polar tubes. Treatment of discharged spores by 2-ME in the presence of SDS results in solubilization of four additional proteins with molecular weights about 46, 34, 21 and 15 kDa.

摘要

将蟋蟀微孢子虫孢子在碱性盐溶液(10 mM KOH,170 mM KCl)中孵育会导致40 kDa主要孢子壁蛋白(p40)溶解。该溶液的两种成分对p40溶解至关重要。孢子在170 mM KCl中孵育后,培养基中没有蛋白质释放。相反,10 mM KOH会导致许多孢子蛋白释放,但只有少量p40。孢子在水中或0.02%叠氮化钠中长时间储存(超过一年)会导致p40含量急剧下降。通过用分离出的p40免疫兔子获得了特异性多克隆抗体。血清的特异性通过免疫印迹得到证实。免疫荧光分析显示在孢子母细胞和孢子形成细胞的包膜上有可靠反应,而只有部分孢子与抗体反应。这种差异可能是由于孢子成熟过程中表面抗原的变化。碱性条件下p40的溶解可能与孢子挤出有关,因为随后将孢子转移到中性溶液中会导致它们排出。随后用1 - 3% SDS、9 M尿素洗涤排出的孢子并经100% 2 - 巯基乙醇处理会导致56 kDa蛋白(p56)溶解。2 - 巯基乙醇的最大浓度对分离纯p56很重要。已经有证据表明p56是蟋蟀微孢子虫极管的一种蛋白。在SDS存在下用2 - 巯基乙醇处理排出的孢子会导致另外四种分子量约为46、34、21和15 kDa的蛋白溶解。

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