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首页> 外文期刊>ACS catalysis >QM/MM Calculations Reveal the Important Role of alpha-Heteroatom Substituents in Controlling Selectivity of Mononuclear Nonheme HppE-Catalyzed Reactions
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QM/MM Calculations Reveal the Important Role of alpha-Heteroatom Substituents in Controlling Selectivity of Mononuclear Nonheme HppE-Catalyzed Reactions

机译:QM / MM计算揭示了α-杂原子取代基在控制单核非血液HPPE催化反应的选择性方面的重要作用

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摘要

The nonheme iron enzyme, (S)-2-hydroxypropyl-phosphonate [(S)-2-HPP] epoxidase (HppE), uses H2O2 as the oxidizing cosubstrate to catalyze the epoxidation of (S)-2-HPP to fosfomycin, as well as other oxidative processes (including dehydrogenation and 1,2-phosphono-migration) of structural isomers of its native substrate. The HppE-catalyzed 1,2-phosphono-migration of (R)-1-HPP, which involves the pro-R hydrogen abstraction from C2, was proposed to proceed via the formation of a C2 carbocation intermediate. Here, we show that such an intermediate does not transpire during the reaction. The reorientation of the singly occupied orbital at the C2-radical center, through out-of-plane torsion of the P-C1-C2-C3 dihedral angle, triggers the phosphono-migration and precludes the attack of the Fe-bound OH on the C2 radical (hydroxylation) as well as the C2-O coupling (epoxidation). For the substrate (1R)-1-hydroxyl-2-aminopropyl phosphonate, the lone-pair electrons on the amino group enable a fast proton-coupled electron transfer process, wherein the proton transfer from the amino group to phosphonate is coupled to the electron transfer from the C2 radical to the iron center, leading to a C2-iminium cation rather than the phosphono-migration. Finally, the C2 iminium intermediate is converted to a ketone product and NH3. These results demonstrate that the alpha-heteroatom substituent is vital for the generation of the cationic species, as well as the selectivity control in the HppE-catalyzed reactions.
机译:非血液铁酶,(S)-2-羟丙基 - 膦酸酯[(S)-2-HPP]环氧酶(HPPE)使用H 2 O 2作为氧化酰基苯磺酸,以催化(S)-2-HPP对FOSFOMCIN的环氧化,如以及其天然基质的结构异构体的其他氧化过程(包括脱氢和1,2-膦醛)。 (R)-1-HPP的HPPE催化的1,2-膦醛迁移,涉及来自C2的Pro-R氢试剂,通过形成C2碳结构中间体进行。在这里,我们表明这种中间体在反应期间不会归吞。通过P-C1-C2-C3二相角度的平面外扭转,在C2-自由基中心的单独占用轨道的重新定向,触发膦迁移,并排除了FE-FEND OH的攻击C2基团(羟基)以及C2-O偶联(环氧化)。对于基材(1R)-1-羟基-2-氨基丙酯,氨基上的孤立电子能够快速质子偶联的电子转移方法,其中从氨基至膦酸盐的质子转移耦合到电子从C2自由基转移到铁中心,导致C2-亚尼米阳离子而不是膦迁移。最后,将C2亚胺中间体转化为酮产物和NH 3。这些结果表明,α-杂原子取代基对于产生阳离子物种至关重要,以及HPPE催化反应中的选择性控制。

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