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来自布氏罗得西亚锥虫的鞭毛袋膜组分:免疫金定位和非可变免疫保护

A flagellar pocket membrane fraction from Trypanosoma brucei rhodesiense: immunogold localization and nonvariant immunoprotection.

作者信息

Olenick J G, Wolff R, Nauman R K, McLaughlin J

机构信息

Department of Applied Biochemistry, Walter Reed Army Institute of Research, Washington, D.C. 20307.

出版信息

Infect Immun. 1988 Jan;56(1):92-8. doi: 10.1128/iai.56.1.92-98.1988.

Abstract

In contrast to the abundance of detailed information on variant-specific surface coat antigens of African trypanosomes, data on possible common or nonvariant antigens within these protozoa are surprisingly limited. In this study, the cellular localization and protective potential of a previously characterized flagellar pocket membrane (FPM) fraction were determined. Immunogold staining of live trypanosome suspensions at 0 to 4 degrees C by using anti-FPM hyperimmune serum raised in rabbits as the primary antibody revealed specific staining of the parasite surface at the emergence of the flagellum from the flagellar pocket. The same specificity of immunogold localization was obtained for each of three distinct variable antigenic types (VATs) of a serodeme of Trypanosoma brucei rhodesiense Wellcome strain. Products of translated mRNA preparations from each of the VATs were precipitated by the FPM antiserum and revealed identical banding patterns when analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, followed by autoradiography. Immunization of mice with FPM fraction protected them against infection by two of the VATs; the third VAT was afforded poor protection. This is the first demonstration of the combined cellular localization, nonvariant nature, and protective potential of a membrane fraction from African trypanosomes.

摘要

与非洲锥虫变体特异性表面被膜抗原的大量详细信息形成对比的是,关于这些原生动物中可能存在的共同或非变体抗原的数据出奇地有限。在本研究中,确定了先前表征的鞭毛袋膜(FPM)组分的细胞定位和保护潜力。使用兔体内产生的抗FPM超免疫血清作为一抗,在0至4摄氏度对活锥虫悬浮液进行免疫金染色,结果显示在鞭毛从鞭毛袋中伸出处,寄生虫表面有特异性染色。对于罗德西亚布氏锥虫韦尔科姆株血清型的三种不同可变抗原类型(VAT)中的每一种,都获得了相同的免疫金定位特异性。来自每种VAT的翻译后mRNA制剂产物被FPM抗血清沉淀,经十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析后再进行放射自显影,显示出相同的条带模式。用FPM组分免疫小鼠可使其免受两种VAT的感染;对第三种VAT的保护作用较差。这是首次证明非洲锥虫膜组分的细胞定位、非变体性质和保护潜力的综合情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6c6/259240/2a065cc97f80/iai00073-0112-a.jpg

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