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Insights into the Assembly of the Alginate Biosynthesis Machinery in Pseudomonas aeruginosa

机译:对铜绿假单胞菌藻酸盐生物合成机械装配的见解

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摘要

Pseudomonas aeruginosa is an opportunistic pathogen of particular significance to cystic fibrosis patients. This bacterium produces the exopolysaccharide alginate, which is an indicator of poor prognosis for these patients. The proteins required for alginate polymerization and secretion are encoded by genes organized in a single operon; however, the existence of internal promoters has been reported. It has been proposed that these proteins form a multiprotein complex which extends from the inner to outer membrane. Here, experimental evidence supporting such a multiprotein complex was obtained via mutual stability analysis, pulldown assays, and coimmunoprecipitation. The impact of the absence of single proteins or subunits on this multiprotein complex, i.e., on the stability of potentially interacting proteins, as well as on alginate production was investigated. Deletion of algK in an alginate-overproducing strain, PDO300, interfered with the polymerization of alginate, suggesting that in the absence of AlgK, the polymerase and copolymerase subunits, Alg8 and Alg44, are destabilized. Based on mutual stability analysis, interactions between AlgE (outer membrane), AlgK (periplasm), AlgX (periplasm), Alg44 (inner membrane), Alg8 (inner membrane), and AlgG (periplasm) were proposed. Coimmunoprecipitation using a FLAG-tagged variant of AlgE further demonstrated its interaction with AlgK. Pulldown assays using histidine-tagged AlgK showed that AlgK interacts with AlgX, which in turn was also copurified with histidine-tagged Alg44. Detection of AlgG and AlgE in PAO1 supported the existence of internal promoters controlling expression of the respective genes. Overall experimental evidence was provided for the existence of a multiprotein complex required for alginate polymerization and secretion.
机译:铜绿假单胞菌是机会性病原体,对囊性纤维化患者特别重要。该细菌产生胞外藻酸盐藻酸盐,这对于这些患者而言预后不良。海藻酸盐聚合和分泌所需的蛋白质由组织在单个操纵子中的基因编码。然而,已经报道了内部启动子的存在。已经提出这些蛋白质形成从内膜延伸到外膜的多蛋白复合物。在这里,通过相互稳定性分析,下拉测定和共免疫沉淀获得了支持这种多蛋白复合物的实验证据。研究了没有单一蛋白质或亚基对该多蛋白质复合物的影响,即对潜在相互作用蛋白质的稳定性以及藻酸盐产生的影响。在藻酸盐高产菌株PDO300中缺失algK会干扰藻酸盐的聚合,这表明在不存在AlgK的情况下,聚合酶和共聚酶亚基Alg8和Alg44是不稳定的。基于相互稳定性分析,提出了AlgE(外膜),AlgK(周质),AlgX(周质),Alg44(内膜),Alg8(内膜)和AlgG(周质)之间的相互作用。使用带有FLAG标签的AlgE变体进行的共免疫沉淀进一步证明了其与AlgK的相互作用。使用组氨酸标签的AlgK进行的下拉分析表明,AlgK与AlgX相互作用,而AlgX也与组氨酸标签的Alg44共纯化。在PAO1中检测到AlgG和AlgE支持控制相应基因表达的内部启动子的存在。总体实验证据提供了藻酸盐聚合和分泌所需的多蛋白复合物的存在。

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