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Membrane Topology and Biochemical Characterization of the Escherichia coli BacA Undecaprenyl-Pyrophosphate Phosphatase

机译:大肠杆菌BacA十一碳烯基焦磷酸磷酸酶的膜拓扑结构和生化特性

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摘要

Several integral membrane proteins exhibiting undecaprenyl-pyrophosphate (C55-PP) phosphatase activity were previously identified in Escherichia coli that belonged to two distinct protein families: the BacA protein, which accounts for 75% of the C55-PP phosphatase activity detected in E. coli cell membranes, and three members of the PAP2 phosphatidic acid phosphatase family, namely PgpB, YbjG and LpxT. This dephosphorylation step is required to provide the C55-P carrier lipid which plays a central role in the biosynthesis of various cell wall polymers. We here report detailed investigations of the biochemical properties and membrane topology of the BacA protein. Optimal activity conditions were determined and a narrow-range substrate specificity with a clear preference for C55-PP was observed for this enzyme. Alignments of BacA protein sequences revealed two particularly well-conserved regions and several invariant residues whose role in enzyme activity was questioned by using a site-directed mutagenesis approach and complementary in vitro and in vivo activity assays. Three essential residues Glu21, Ser27, and Arg174 were identified, allowing us to propose a catalytic mechanism for this enzyme. The membrane topology of the BacA protein determined here experimentally did not validate previous program-based predicted models. It comprises seven transmembrane segments and contains in particular two large periplasmic loops carrying the highly-conserved active site residues. Our data thus provide evidence that all the different E. coli C55-PP phosphatases identified to date (BacA and PAP2) catalyze the dephosphorylation of C55-PP molecules on the same (outer) side of the plasma membrane.
机译:先前已在大肠杆菌中鉴定出几种具有十一碳烯基焦磷酸(C55-PP)磷酸酶活性的完整膜蛋白,它们属于两个不同的蛋白质家族:BacA蛋白,占大肠杆菌中检测到的C55-PP磷酸酶活性的75%。细胞膜和PAP2磷脂酸磷酸酶家族的三个成员,即PgpB,YbjG和LpxT。需要该去磷酸化步骤以提供C55-P载体脂质,该脂质在各种细胞壁聚合物的生物合成中起着核心作用。我们在这里报告了BacA蛋白的生化特性和膜拓扑的详细研究。确定了最佳活性条件,并观察到该酶的窄范围底物特异性,尤其是C55-PP。 BacA蛋白序列的比对揭示了两个特别保守的区域和几个不变的残基,这些残基在酶活性中的作用受到定点诱变方法和互补的体外和体内活性测定的质疑。确定了三个必需残基Glu21,Ser27和Arg174,这使我们能够提出该酶的催化机制。通过实验确定的BacA蛋白的膜拓扑结构无法验证以前基于程序的预测模型。它包含七个跨膜区段,并且特别包含两个带有高度保守的活性位点残基的大周质环。因此,我们的数据提供了证据,表明迄今鉴定出的所有不同的大肠杆菌C55-PP磷酸酶(BacA和PAP2)都可催化质膜同一(外侧)面上C55-PP分子的去磷酸化。

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