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The Pseudomonas aeruginosa Ribbon-Helix-Helix DNA-Binding Protein AlgZ (AmrZ) Controls Twitching Motility and Biogenesis of Type IV Pili

机译:铜绿假单胞菌丝带-螺旋-螺旋DNA结合蛋白AlgZ(AmrZ)控制IV动和IV型菌毛的生物发生。

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摘要

Pseudomonas aeruginosa is an opportunistic pathogen that is commonly found in water and soil. In order to colonize surfaces with low water content, P. aeruginosa utilizes a flagellum-independent form of locomotion called twitching motility, which is dependent upon the extension and retraction of type IV pili. This study demonstrates that AlgZ, previously identified as a DNA-binding protein absolutely required for transcription of the alginate biosynthetic operon, is required for twitching motility. AlgZ may be required for the biogenesis or function of type IV pili in twitching motility. Transmission electron microscopy analysis of an algZ deletion in nonmucoid PAO1 failed to detect surface pili. To examine expression and localization of PilA (the major pilin subunit), whole-cell extracts and cell surface pilin preparations were analyzed by Western blotting. While the PilA levels present in whole-cell extracts were similar for wild-type P. aeruginosa and P. aeruginosa with the algZ deletion, the amount of PilA on the surface of the cells was drastically reduced in the algZ mutant. Analysis of algZ and algD mutants indicates that the DNA-binding activity of AlgZ is essential for the regulation of twitching motility and that this is independent of the role of AlgZ in alginate expression. These data show that AlgZ DNA-binding activity is required for twitching motility independently of its role in alginate production and that this involves the surface localization of type IV pili. Given this new role in twitching motility, we propose that algZ (PA3385) be designated amrZ (alginate and motility regulator Z).
机译:铜绿假单胞菌是机会病原体,通常在水和土壤中发现。为了在水含量低的表面定殖,铜绿假单胞菌利用鞭毛运动的鞭毛独立形式,这种运动依赖于IV型菌毛的伸展和收缩。这项研究表明,先前被鉴定为藻酸盐生物合成操纵子转录绝对必需的DNA结合蛋白的AlgZ,对于抽动运动是必需的。 IV型菌毛在抽动运动中的生物发生或功能可能需要AlgZ。透射电子显微镜分析非粘液性PAO1中的algZ缺失未能检测到表面菌毛。为了检查PilA(主要的菌毛蛋白亚基)的表达和定位,通过蛋白质印迹分析了全细胞提取物和细胞表面菌毛蛋白制剂。尽管野生型铜绿假单胞菌和带有algZ缺失的铜绿假单胞菌在全细胞提取物中存在的PilA水平相似,但在algZ突变体中,细胞表面PilA的含量却大大降低了。对algZ和algD突变体的分析表明,AlgZ的DNA结合活性对于调节抽搐运动至关重要,并且这与AlgZ在藻酸盐表达中的作用无关。这些数据表明,AlgZ DNA结合活性是抽动运动所必需的,而与其在藻酸盐生产中的作用无关,并且这涉及IV型菌毛的表面定位。考虑到抽搐运动中的这一新作用,我们建议将algZ(PA3385)命名为amrZ(藻酸盐和运动调节剂Z)。

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