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The hmp chemotaxis cluster regulates gliding in the filamentous cyanobacterium Nostoc punctiforme

机译:hmp趋化性簇调节丝状蓝藻点状诺氏菌中的滑动。

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Summary: Many bacteria are capable of movement over surfaces without flagella or pili; they glide. Nostoc punctiforme is a cyanobacterium that differentiates specialized gliding filaments called hormogonia, but the mechanism underlying their movement is currently unknown. Risser etal. characterize the hormogonia motility and polysaccharide (hmp) locus that encodes proteins homologous to well-studied chemotaxis systems. All but one of the genes in the locus were required for gliding motility and each protein localized as a ring near the cell junction. One protein, the CheA homologue HmpE, was capable of autophosphorylation and phosphotransfer to the CheY homologue HmpB. This study reveals the hmp locus as an important regulator of gliding and highlights N.punctiforme as a model for understanding gliding motility in a complex multicellular bacterium.
机译:简介:许多细菌能够在没有鞭毛或菌毛的表面上移动;他们滑行。点状鼻孔菌是一种蓝细菌,能区分称为滑翔菌的特殊滑行细丝,但目前尚不清楚它们运动的机理。 Risser等。表征激素运动性和多糖(hmp)基因座,该基因座编码与经过充分研究的趋化性系统同源的蛋白质。该位点中除一个基因外的所有基因都是滑翔运动所必需的,并且每个蛋白质都定位为靠近细胞接头的环。一种蛋白质,即CheA同源HmpE,能够自磷酸化并磷酸转移到CheY同源HmpB。这项研究揭示了hmp基因位点是滑行的重要调控因子,并着重介绍了点状猪笼草是理解复杂多细胞细菌中滑行运动的模型。

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