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Mechanism of the C5 Stereoinversion Reaction in the Biosynthesis of Carbapenem Antibiotics

机译:C5立体转化反应在碳青霉烯抗生素生物合成中的作用机理

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摘要

The bicyclic β-lactam/2-pyrrolidine precursor to all carbapenem antibiotics is biosynthesized by attachment of a carboxymethylene unit to C5 of L-proline followed by β-lactam ring closure. Carbapenem synthase (CarC), an Fe(II)- and 2-(oxo)glutarate-dependent (Fe/2OG) oxygenase, then inverts the C5 configuration. Here we report the structure of CarC in complex with its substrate and biophysical dissection of its reaction to reveal the stereoinversion mechanism. An Fe(IV)-oxo intermediate abstracts the hydrogen (H•) from C5, and tyrosine 165, a residue not visualized in the published structures of CarC lacking bound substrate, donates H• to the opposite face of the resultant radical. The reaction oxidizes the Fe(II) cofactor to Fe(III), limiting wild-type CarC to one turnover, but substitution of the H•-donating tyrosine disables stereoinversion and confers to CarC the capacity for catalytic substrate oxidation.
机译:所有羧甲基青霉烯抗生素的双环β-内酰胺/ 2-吡咯烷前体是通过将羧亚甲基单元连接到L-脯氨酸的C5上,然后闭合β-内酰胺环而生物合成的。碳青霉烯合酶(CarC)是一种Fe(II)和2-(氧代)谷氨酸依赖性(Fe / 2OG)加氧酶,然后反转C5构型。在这里,我们报道了CarC的结构及其底物和反应的生物物理解剖结构,揭示了立体反转机理。 Fe(IV)-氧代中间体从C5中提取氢(H•),酪氨酸165(在缺少结合底物的CarC公开结构中未显示的残基)将H•赠予所得自由基的相反面。该反应将Fe(II)辅助因子氧化为Fe(III),从而将野生型CarC限制为一个周转,但是取代H•的酪氨酸会禁用立体反转,并赋予CarC催化底物氧化的能力。

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