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Microcinematographic analysis of tethered Leptospira illini.

机译:系绳状钩端螺旋体伊利尼的微电影照相分析。

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摘要

A model of Leptospira motility was recently proposed. One element of the model states that in translating cells the anterior spiral-shaped end gyrates counterclockwise and the posterior hook-shaped end gyrates clockwise. We tested these predictions by analyzing cells tethered to a glass surface. Leptospira illini was incubated with antibody-coated latex beads (Ab-beads). These beads adhered to the cells, and subsequently some cells became attached to either the slide or the cover glass via the Ab-beads. As previously reported, these cells rapidly moved back and forth across the surface of the beads. In addition, a general trend was observed: cells tethered to the cover glass rotated clockwise around the Ab-bead; cells tethered to the slide rotated counterclockwise around the Ab-bead. A computer-aided microcinematographic analysis of tethered cells indicated that the direction of rotation of cells around the Ab-bead was a function of both the surface of attachment and the shape of the cell ends. The results can best be explained by assuming that the gyrating ends interact with the glass surface to cause rotation around the Ab-beads. The analysis obtained indicates that the hook- and spiral-shaped ends rotate in the directions predicted by the model. In addition, the tethered cell assay permitted detection of rapid, coordinated reversals of the cell ends, e.g., cells rapidly switched from a hook-spiral configuration to a spiral-hook configuration. These results suggest the existance of a mechanism which coordinates the shape of the cell ends of L. illini.
机译:最近提出了钩端螺旋体运动模型。该模型的一个要素指出,在平移细胞时,前螺旋形末端旋转逆时针旋转,而后钩形末端旋转顺时针旋转。我们通过分析拴在玻璃表面的细胞来测试这些预测。将伊氏钩端螺旋体与抗体包被的乳胶珠(Ab珠)一起孵育。这些珠子粘附在细胞上,随后一些细胞通过Ab-珠子附着在载玻片或盖玻片上。如先前报道的,这些细胞在珠子表面上来回快速移动。此外,观察到总体趋势:拴在盖玻片上的细胞围绕着Ab珠顺时针旋转。拴在玻片上的细胞围绕Ab-bead逆时针旋转。系留细胞的计算机辅助微电影层析分析表明,围绕Ab珠的细胞旋转方向是附着表面和细胞末端形状的函数。可以通过假设旋转端与玻璃表面相互作用以引起围绕Ab珠的旋转来最好地解释结果。所获得的分析表明,钩形和螺旋形末端沿模型预测的方向旋转。另外,系留细胞测定法允许检测细胞末端的快速,协调的逆转,例如,细胞从钩-螺旋构型迅速转变为螺旋-钩构型。这些结果表明存在协调伊利尼乳杆菌细胞末端形状的机制。

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