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首页> 外文期刊>Nature chemical biology >Purinyl-cobamide is a native prosthetic group of reductive dehalogenases
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Purinyl-cobamide is a native prosthetic group of reductive dehalogenases

机译:嘌呤 - 咖啡酰胺是还原脱氢酶的原生假药组

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摘要

Cobamides such as vitamin B-12 are structurally conserved, cobalt-containing tetrapyrrole biomolecules that have essential biochemical functions in all domains of life. In organohalide respiration, a vital biological process for the global cycling of natural and anthropogenic organohalogens, cobamides are the requisite prosthetic groups for carbon-halogen bond-cleaving reductive dehalogenases. This study reports the biosynthesis of a new cobamide with unsubstituted purine as the lower base and assigns unsubstituted purine a biological function by demonstrating that Co alpha-purinyl-cobamide (purinyl-Cba) is the native prosthetic group in catalytically active tetrachloroethene reductive dehalogenases of Desulfitobacterium hafniense. Cobamides featuring different lower bases are not functionally equivalent, and purinyl-Cba elicits different physiological responses in corrinoid-auxotrophic, organohalide-respiring bacteria. Given that cobamide-dependent enzymes catalyze key steps in essential metabolic pathways, the discovery of a novel cobamide structure and the realization that lower bases can effectively modulate enzyme activities generate opportunities to manipulate functionalities of microbiomes.
机译:诸如维生素B-12的杂种物是在结构保守的钴的钴的四吡咯生物分子中,其在所有生命域中具有必要的生化功能。在有机卤化物呼吸中,钴的全球循环的重要生物方法是碳酰胺的必要的假体粘结酶的未经溶解的脱氢酶。本研究报告了具有未取代的嘌呤作为下碱的生物合成,作为下部基础,通过证明Coα-嘌呤酰基 - 咖啡酰胺(嘌呤-CBA)是脱硫杆菌的催化活性四氯乙烯还原酶中的天然假药酶的生物学功能来分配未取代的嘌呤A生物学功能Hafniense。具有不同较低碱基的杂种物在功能上不等同,嘌呤 - CBA在蜂鸣营养营养,有机卤化物 - 呼吸细菌中引发不同的生理反应。鉴于杂胺依赖性酶催化基本代谢途径中的关键步骤,发现新的古胺结构和降低碱可以有效调节酶活性的实现产生机会以操纵微生物的功能。

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