皮癣菌分泌蛋白的等电聚焦分析在小孢子和毛癣菌分类分化中的应用(初步研究)。

C. Jeffries, E. Reiss, L. Ajello
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引用次数: 22

摘要

在标准条件下从皮肤真菌中制备培养滤液,并在pH范围为3.5-9.5的薄层聚丙烯酰胺凝胶中进行分析等电聚焦。在胰蛋白酶豆汤中生长的皮肤真菌分泌大量具有广泛等电点(pi)的蛋白质。meginii毛癣菌提取物中含有pH值在8.0-8.5范围内的三联体蛋白,这些蛋白在分类上相关的T. kuryangei分离株中不存在。单子囊孢子分离株和标准试验菌株(+)交配型与(-)交配型通过蛋白聚焦于pH 6.5和8.4进行区分。这些在(+)型中明显减少。犬小孢子虫的等焦模式与大孢子虫的(-)交配模式基本一致。微孢子虫和库阳孢子虫的蛋白谱与犬芽孢杆菌和马芽孢杆菌的不同之处在于,它们的蛋白谱具有较强的宽染色带,pI值为7.2,并且有3个周期的酸性-希夫阳性糖蛋白集中在酸性范围内,而这些在小孢子菌中是不存在的。在小孢子属中存在一种特征性蛋白或双联蛋白(pI 8.7),而在毛藻属中不存在。分析等电聚焦是一种潜在的有用方法,可以区分培养滤液和毛癣菌中皮肤真菌蛋白分泌模式的种间和种内差异。所得的资料可能对物种分类有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical isoelectric focusing of secreted dermatophyte proteins applied to taxonomic differentiation of Microsporum and Trichophyton species (preliminary studies).
Culture filtrates were prepared from dermatophytes under standard conditions and adapted for analytical isoelectric focusing in thin layer polyacrylamide gels over the pH range 3.5-9.5. Dermatophytes grown in trypticase soy broth secreted a large number of proteins displaying a wide range of isoelectric points (pIs). Trichophyton megninii extracts contained a triplet of proteins focusing in the pH 8.0-8.5 range that were absent in taxonomically related T. kuryangei isolates. Single ascospore isolates and standard tester strains of Nannizzia otae (+) mating type were differentiated from the (-) mating type by proteins focusing at pH 6.5 and 8.4. These were markedly reduced in the (+) type. The isofocused pattern of Microsporum canis conformed closely to the (-) mating type of N. otae. The protein patterns of T. megninii and T. kuryangei were distinct from those obtained with M. canis and M. equinum because of an intense-staining broad protein band, pI 7.2, and three periodic acid-Schiff-positive glycoproteins focusing in the acidic range which were absent in the Microsporum species. A characteristic protein or doublet (pI 8.7) was present in the Microsporum species and absent in the Trichophyton species. Analytical isoelectric focusing is a potentially useful method to distinguish inter- and intra-species differences in the pattern of secreted dermatophyte proteins present in culture filtrates and in trichophytins. The information derived may be useful in the classification of species.
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