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A flagella-less mutant of Borrelia burgdorferi. Structural, molecular, and in vitro functional characterization.

机译:无鞭毛的伯氏疏螺旋体突变体。结构,分子和体外功能表征。

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摘要

A nonmotile mutant of Borrelia burgdorferi, the etiologic agent of Lyme disease, was isolated and characterized. The mutant was compared with the wild-type predecessor as well as with a motile back-revertant of the same genetic background. The mutant lacked, by morphologic, biochemical, and immunologic criteria, the major structural protein of flagella, flagellin. This mutation was not associated with major DNA rearrangements or with failure of transcription. An apparent consequence of a loss of flagella was reduced ability to penetrate human endothelial cell layers in vitro. In another assessment of functional significance, the flagella-less mutant was equal if not superior to flagella-bearing, isogenic isolates when examined in an enzyme-linked immunosorbent assay for anti-B. burgdorferi antibodies in the sera of Lyme disease patients. These studies of a mutant, the first among pathogenic Borrelia spp. to be characterized, indicate that the flagellum and motility it confers play a role in B. burgdorferi's invasion of human tissues. A flagella-less B. burgdorferi may be useful as the basis of a more specific immunoassay and a vaccine for protection against Lyme disease.
机译:分离并鉴定了莱姆病的病原体伯氏疏螺旋体(Borrelia burgdorferi)的非运动突变体。将该突变体与野生型的前体以及具有相同遗传背景的能动的反向回复体进行了比较。根据形态,生化和免疫学标准,该突变体缺乏鞭毛的主要结构蛋白鞭毛蛋白。该突变与主要的DNA重排或转录失败无关。鞭毛损失的明显后果是体外穿透人内皮细胞层的能力降低。在功能重要性的另一评估中,当在抗B的酶联免疫吸附试验中检查时,无鞭毛突变体等于或不等于带有鞭毛的同基因分离株。莱姆病患者血清中的burgdorferi抗体。这些突变体的研究,是致病性疏螺旋体中的第一个突变体。要进行表征,表明其赋予的鞭毛和运动在伯氏疏螺旋体侵袭人体组织中起作用。不含鞭毛的B.burgdorferi可用作更特异性免疫测定的基础和针对莱姆病的疫苗。

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