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首页> 外文期刊>Infection and immunity >Antigenic interrelationship between endoflagella of Treponema phagedenis biotype Reiter and Treponema pallidum (Nichols): molecular characterization of endoflagellar proteins.
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Antigenic interrelationship between endoflagella of Treponema phagedenis biotype Reiter and Treponema pallidum (Nichols): molecular characterization of endoflagellar proteins.

机译:球形密螺旋体生物型Reiter鞭毛内膜与苍白螺旋体(Nichols)之间的抗原相互关系:鞭毛蛋白的分子表征。

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Purified endoflagella from nonpathogenic Treponema phagedenis biotype Reiter were characterized biochemically and compared antigenically with the endoflagellar proteins of Treponema pallidum. T. phagedenis biotype Reiter endoflagella were dissociated into constituent polypeptides by incubation under conditions which disrupt noncovalent bonds. Chymotrypsin peptide maps of T. phagedenis biotype Reiter endoflagellar proteins revealed that the 37- and 33-kilodalton (kDa) major components shared significant homology with the 27- and 30-kDa minor components, respectively. The peptide maps also suggested that the major components shared a lesser degree of structural similarity with each other. These relationships were confirmed by Western blots of T. phagedenis biotype Reiter endoflagellar proteins employing antibodies that were purified against the individual endoflagellar polypeptides. Western blots of T. pallidum with the purified antibodies also demonstrated strong cross-reactivity between the T. phagedenis biotype Reiter endoflagellar proteins and T. pallidum proteins of identical or similar molecular weights. A unique Western blotting technique that we called epitope bridging was used to determine that the 37-kDa subunit contains most of the external epitopes on T. phagedenis biotype Reiter endoflagella. Immunoelectron microscopy with human syphilitic serum and rabbit T. phagedenis biotype Reiter endoflagellar antiserum confirmed the presence of cross-reactive epitopes on the surface of intact T. phagedenis and T. pallidum endoflagella.
机译:对非致病性噬菌梅毒菌Reiter型纯化的鞭毛进行了生化鉴定,并与苍白密螺旋体的鞭毛蛋白进行了抗原比较。通过在破坏非共价键的条件下温育,将白僵菌(T. phagedenis)生物型内鞭毛分离成组成多肽。噬菌体生物型赖特内鞭毛蛋白的胰凝乳蛋白酶肽图显示37-和33-千达尔顿(kDa)主要成分分别与27-和30-kDa次要成分具有明显的同源性。肽图还表明主要成分彼此之间的结构相似性程度较低。通过使用针对各个鞭毛内膜多肽纯化的抗体的噬菌体生物型Reiter鞭毛内膜蛋白的Western印迹证实了这些关系。用纯化的抗体对苍白球菌的蛋白质印迹也证明了在食指球菌生物型赖特内鞭毛蛋白和分子量相同或相似的苍白球菌蛋白之间有很强的交叉反应性。我们使用一种独特的Western印迹技术(我们称为表位桥接)来确定37-kDa亚基包含pha phagedenis生物型Reiter内鞭毛虫的大多数外部表位。人体梅毒血清和兔牙根瘤菌生物型Reiter鞭毛内膜抗血清的免疫电子显微镜检查证实,完整的phagedenis和苍白螺旋体内鞭毛表面上存在交叉反应性抗原决定簇。

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