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Spatial and numerical regulation of flagellar biosynthesis in polarly flagellated bacteria

机译:极鞭毛细菌鞭毛生物合成的空间和数值调控

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Summary: Control of surface organelle number and placement is a crucial aspect of the cell biology of many Gram-positive and Gram-negative bacteria, yet mechanistic insights into how bacteria spatially and numerically organize organelles are lacking. Many surface structures and internal complexes are spatially restricted in the bacterial cell (e.g. type IV pili, holdfasts, chemoreceptors), but perhaps none show so many distinct patterns in terms of number and localization as the flagellum. In this review, we discuss two proteins, FlhF and FlhG (also annotated FleN/YlxH), which control aspects of flagellar assembly, placement and number in polar flagellates, and may influence flagellation in some bacteria that produce peritrichous flagella. Experimental data obtained in a number of bacterial species suggest that these proteins may have acquired distinct attributes influencing flagellar assembly that reflect the diversity of flagellation patterns seen in different polar flagellates. Recent findings also suggest FlhF and FlhG are involved in other processes, such as influencing the rotation of flagella and proper cell division. Continued examination of these proteins in polar flagellates is expected to reveal how different bacteria have adapted FlhF or FlhG with specific activities to tailor flagellar biosynthesis and motility to fit the needs of each species.
机译:简介:控制表面细胞器的数量和位置是许多革兰氏阳性和革兰氏阴性细菌细胞生物学的关键方面,但缺乏关于细菌如何在空间和数量上组织细胞器的机制的见解。细菌细胞中许多表面结构和内部复合物在空间上受到限制(例如IV型菌毛,固着物,化学感受器),但就鞭毛的数量和位置而言,也许没有一个显示出如此独特的模式。在这篇综述中,我们讨论了两种蛋白质,FlhF和FlhG(也标注为FleN / YlxH),它们控制鞭毛装配,极性鞭毛中的位置和数量,并可能影响某些产生周生鞭毛的细菌的鞭毛。在许多细菌物种中获得的实验数据表明,这些蛋白质可能具有影响鞭毛装配的独特属性,这些属性反映了在不同极性鞭毛中观察到的鞭毛模式的多样性。最近的发现还表明,FlhF和FlhG也参与其他过程,例如影响鞭毛的旋转和适当的细胞分裂。预计将继续检查极鞭毛中的这些蛋白质,以揭示不同细菌如何通过特定活性使FlhF或FlhG适应鞭毛的生物合成和运动,以适应每个物种的需求。

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