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In Vitro Characterization and Concerted Function of Three Core Enzymes of a Glycyl Radical Enzyme - Associated Bacterial Microcompartment

机译:糖基自由基酶相关细菌微区隔的三种核心酶的体外表征和协同功能

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摘要

Many bacteria encode proteinaceous bacterial microcompartments (BMCs) that encapsulate sequential enzymatic reactions of diverse metabolic pathways. Well-characterized BMCs include carboxysomes for CO2-fixation, and propanediol- and ethanolamine-utilizing microcompartments that contain B12-dependent enzymes. Genes required to form BMCs are typically organized in gene clusters, which promoted their distribution across phyla by horizontal gene transfer. Recently, BMCs associated with glycyl radical enzymes (GREs) were discovered; these are widespread and comprise at least three functionally distinct types. Previously, we predicted one type of these GRE-associated microcompartments (GRMs) represents a B12-independent propanediol-utilizing BMC. Here we functionally and structurally characterize enzymes of the GRM of Rhodopseudomonas palustris BisB18 and demonstrate their concerted function in vitro. The GRM signature enzyme, the GRE, is a dedicated 1,2-propanediol dehydratase with a new type of intramolecular encapsulation peptide. It forms a complex with its activating enzyme and, in conjunction with an aldehyde dehydrogenase, converts 1,2-propanediol to propionyl-CoA. Notably, homologous GRMs are also encoded in pathogenic Escherichia coli strains. Our high-resolution crystal structures of the aldehyde dehydrogenase lead to a revised reaction mechanism. The successful in vitro reconstitution of a part of the GRM metabolism provides insights into the metabolic function and steps in the assembly of this BMC.
机译:许多细菌编码蛋白质性细菌微区室(BMC),它们封装了各种代谢途径的顺序酶促反应。表征良好的BMC包括用于CO2固定的羧基小体,以及含有B12依赖性酶的利用丙二醇和乙醇胺的微室。形成BMC所需的基因通常组织在基因簇中,通过水平基因转移促进其在整个门上的分布。最近,发现了与糖基自由基酶(GREs)相关的BMC。这些是广泛的并且包括至少三种功能上不同的类型。以前,我们预测这些与GRE相关的微隔室(GRM)的一种类型代表了不依赖B12的利用丙二醇的BMC。在这里,我们在功能和结构上表征了红假单胞菌BisB18的GRM酶,并证明了它们在体外的协同功能。 GRM签名酶GRE是一种专用的1,2-丙二醇脱水酶,具有新型的分子内包封肽。它与其活化酶形成复合物,并与醛脱氢酶一起将1,2-丙二醇转化为丙酰基-CoA。值得注意的是,同源GRMs也在致病性大肠杆菌菌株中编码。我们的醛脱氢酶的高分辨率晶体结构导致修订的反应机理。 GRM代谢的一部分的成功体外重组提供了对该BMC组装的代谢功能和步骤的深入了解。

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