首页> 外文OA文献 >Functional Analysis of the Nicotinate Mononucleotide:5,6-Dimethylbenzimidazole Phosphoribosyltransferase (CobT) Enzyme, Involved in the Late Steps of Coenzyme B12 Biosynthesis in Salmonella enterica▿ ‡
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Functional Analysis of the Nicotinate Mononucleotide:5,6-Dimethylbenzimidazole Phosphoribosyltransferase (CobT) Enzyme, Involved in the Late Steps of Coenzyme B12 Biosynthesis in Salmonella enterica▿ ‡

机译:烟酸单核苷酸:5,6-二甲基苯并咪唑磷酸核糖基转移酶(CobT)酶的功能分析,参与了肠道沙门氏菌中辅酶B12生物合成的后期步骤

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摘要

In Salmonella enterica, the CobT enzyme activates the lower ligand base during the assembly of the nucleotide loop of adenosylcobalamin (AdoCbl) and other cobamides. Previously, mutational analysis identified a class of alleles (class M) that failed to restore AdoCbl biosynthesis during intragenic complementation studies. To learn why class M cobT mutations were deleterious, we determined the nature of three class M cobT alleles and performed in vivo and in vitro functional analyses guided by available structural data on the wild-type CobT (CobTWT) enzyme. We analyzed the effects of the variants CobT(G257D), CobT(G171D), CobT(G320D), and CobT(C160A). The latter was not a class M variant but was of interest because of the potential role of a disulfide bond between residues C160 and C256 in CobT activity. Substitutions G171D, G257D, and G320D had profound negative effects on the catalytic efficiency of the enzyme. The C160A substitution rendered the enzyme fivefold less efficient than CobTWT. The CobT(G320D) protein was unstable, and results of structure-guided site-directed mutagenesis suggest that either variants CobT(G257D) and CobT(G171D) have less affinity for 5,6-dimethylbenzimidazole (DMB) or access of DMB to the active site is restricted in these variant proteins. The reported lack of intragenic complementation among class M cobT alleles is caused in some cases by unstable proteins, and in others it may be caused by the formation of dimers between two mutant CobT proteins with residual activity that is so low that the resulting CobT dimer cannot synthesize sufficient product to keep up with even the lowest demand for AdoCbl.
机译:在肠沙门氏菌中,CobT酶在腺苷钴胺素(AdoCbl)和其他钴酰胺的核苷酸环组装过程中激活了较低的配体碱基。以前,突变分析确定了一类等位基因(M类),在基因内互补研究中未能恢复AdoCbl的生物合成。为了了解M类cobT突变为何有害的原因,我们确定了三个M类cobT等位基因的性质,并根据野生型CobT(CobTWT)酶的可用结构数据进行了体内和体外功能分析。我们分析了变体CobT(G257D),CobT(G171D),CobT(G320D)和CobT(C160A)的影响。后者不是M类变体,但由于在残基C160和C256之间的二硫键在CobT活性中的潜在作用而引起关注。取代基G171D,G257D和G320D对酶的催化效率具有深远的负面影响。 C160A取代使酶的效率比CobTWT低五倍。 CobT(G320D)蛋白不稳定,结构导向定点诱变的结果表明,变体CobT(G257D)和CobT(G171D)对5,6-二甲基苯并咪唑(DMB)的亲和力较小,或DMB与活性位点在这些变异蛋白中受到限制。报道的M类cobT等位基因之间缺乏基因内互补是由不稳定的蛋白质引起的,而在另一些情况下,可能是由于两个突变CobT蛋白之间形成的二聚体而导致的,其残留活性非常低,导致所得CobT二聚体不能合成足够的产品,以适应甚至最低的AdoCbl需求。

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