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Pseudomonas aeruginosa d-Arabinofuranose Biosynthetic Pathway and Its Role in Type IV Pilus Assembly

机译:铜绿假单胞菌d-阿拉伯呋喃糖生物合成途径及其在IV型毛Pi组装中的作用

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摘要

Pseudomonas aeruginosa strains PA7 and Pa5196 glycosylate their type IVa pilins with α1,5-linked d-arabinofuranose (d-Araf), a rare sugar configuration identical to that found in cell wall polymers of the Corynebacterineae. Despite this chemical identity, the pathway for biosynthesis of α1,5-d-Araf in Gram-negative bacteria is unknown. Bioinformatics analyses pointed to a cluster of seven P. aeruginosa genes, including homologues of the Mycobacterium tuberculosis genes Rv3806c, Rv3790, and Rv3791, required for synthesis of a polyprenyl-linked d-ribose precursor and its epimerization to d-Araf. Pa5196 mutants lacking the orthologues of those genes had non-arabinosylated pilins, poor twitching motility, and significantly fewer surface pili than the wild type even in a retraction-deficient (pilT) background. The Pa5196 pilus system assembled heterologous non-glycosylated pilins efficiently, demonstrating that it does not require post-translationally modified subunits. Together the data suggest that pilins of group IV strains need to be glycosylated for productive subunit-subunit interactions. A recombinant P. aeruginosa PAO1 strain co-expressing the genes for d-Araf biosynthesis, the pilin modification enzyme TfpW, and the acceptor PilAIV produced arabinosylated pili, confirming that the Pa5196 genes identified are both necessary and sufficient. A P. aeruginosa epimerase knock-out could be complemented with the corresponding Mycobacterium smegmatis gene, demonstrating conservation between the systems of the Corynebacterineae and Pseudomonas. This work describes a novel Gram-negative pathway for biosynthesis of d-Araf, a key therapeutic target in Corynebacterineae.
机译:铜绿假单胞菌菌株PA7和Pa5196用α1,5-连接的d-阿拉伯呋喃糖(d-Araf)糖基化其IVa菌毛蛋白,这种稀有的糖构型与棒状杆菌细胞壁聚合物中的糖构型相同。尽管具有这种化学特性,但革兰氏阴性细菌中α1,5-d-Araf的生物合成途径尚不清楚。生物信息学分析指出,有七个铜绿假单胞菌基因簇,包括结核分枝杆菌基因Rv3806c,Rv3790和Rv3791的同源物,这是聚异戊二烯连接的d-核糖前体的合成及其向d-Araf的异构化所必需的。缺少那些基因的直向同源物的Pa5196突变体具有非阿拉伯糖基化的菌毛蛋白,抽搐运动力差,并且即使在缩回缺陷(pilT)背景下,其表面菌毛也比野生型少。 Pa5196菌毛系统有效地组装了异源非糖基化的菌毛蛋白,表明它不需要翻译后修饰的亚基。数据一起表明,IV组毒株的菌毛必须进行糖基化才能产生有效的亚基-亚基相互作用。重组铜绿假单胞菌PAO1菌株共表达d-Araf生物合成基因,菌毛蛋白修饰酶TfpW和受体PilAIV产生阿拉伯糖基化菌毛,这证实了所鉴定的Pa5196基因既必要又充分。铜绿假单胞菌差向异构酶基因敲除可以与相应的耻垢分枝杆菌基因互补,这表明棒状杆菌和假单胞菌系统之间的保守性。这项工作描述了一种新的革兰氏阴性途径,用于d-Araf(棒状杆菌科的主要治疗靶标)的生物合成。

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