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PhnJ – A novel radical SAM enzyme from the C–P lyase complex

机译:phnj - 来自C-P碱酶复合物的一种新型的基团SAM酶

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PhnJ from the C–P lyase complex catalyzes the cleavage of the carbon–phosphorus bond in ribose-1-phosphonate-5-phosphate (PRPn) to produce methane and ribose-1,2-cyclic-phosphate-5-phosphate (PRcP). This protein is a novel radical SAM enzyme that uses glycyl and thiyl radicals as reactive intermediates in the proposed reaction mechanism. The overall reaction is initiated with the reductive cleavage of S-adenosylmethionine (SAM) by a reduced [4Fe–4S] 1+ -cluster to form an Ado-CH 2 ? radical intermediate. This intermediate abstracts the proR hydrogen from Gly-32 of PhnJ to form Ado-CH 3 and a glycyl radical. In the next step, there is hydrogen atom transfer from Cys-272 to the Gly-32 radical to generate a thiyl radical. The thiyl radical attacks the phosphorus center of the substrate, PRPn, to form a transient thiophosphonate radical intermediate. This intermediate collapses via homolytic C–P bond cleavage and hydrogen atom transfer from the proS hydrogen of Gly-32 to produce a thiophosphate intermediate, methane, and a radical intermediate at Gly-32. The final product, PRcP, is formed by nucleophilic attack of the C2-hydroxyl on the transient thiophosphate intermediate. This reaction regenerates the free thiol group of Cys-272. After hydrogen atom transfer from Cys-272 to the Gly-32 radical, the entire process is repeated with another substrate molecule without the use of another molecule of SAM or involvement from the [4Fe–4S]-cluster again.
机译:来自C-P裂解酶复合物的PHNJ催化核糖-1-膦酸酯-5-磷酸(PRPN)中的碳磷键的切割,以产生甲烷和核糖-1,2-环磷酸-5-磷酸盐(PRCP) 。该蛋白质是一种新的基团SAM酶,其在所提出的反应机制中使用甘甘油和硫基作为反应性中间体。通过减少的[4FE-4S] 1+ -Cluster,用S-腺苷甲基乙硫氨酸(SAM)的还原切割引发整体反应,以形成ADO-CH 2?激进的中间体。这种中间体摘要来自PHNJ的GLOR-32的鼠氢以形成ADO-CH 3和甘甘油。在下一步骤中,从Cys-272氢原子转移到Gly-32基团以产生巯基。巯基攻击底物PrPN的磷中心,以形成瞬时硫代磷酸酯的中间体。该中间体通过均分型C-P键裂解和从Gly-32的优点氢转移的氢原子转移,得到硫代磷酸磷酸盐中间体,甲烷和甲烷的基团中间体。最终产品PRCP是通过在瞬时硫代磷酸盐中间体上的C2-羟基的亲核侵蚀形成的。该反应再生Cys-272的游离硫醇组。在从Cys-272转移到Gly-32的氢原子转移到Gly-32之后,用另一个底物分子重复整个过程,而不使用另一种SAM或再次参与[4FE-4S] -Cluster。

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