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催化参与的底物自由基 - 钴(II)双自由基状态下,与乙醇胺脱氨酶结合的钴胺素中,二甲基苯并咪唑轴向配位的鉴定以及(14)N超超精细和核四极耦合的表征。

Identification of dimethylbenzimidazole axial coordination and characterization of (14)N superhyperfine and nuclear quadrupole coupling in Cob(II)alamin bound to ethanolamine deaminase in a catalytically-engaged substrate radical-Cobalt(II) biradical state.

作者信息

Ke S C, Torrent M, Museav D G, Morokuma K, Warncke K

机构信息

Department of Physics, 1001 Rollins Research Center, 1510 Clifton Road, Emory University, Atlanta, Georgia 30322, USA.

出版信息

Biochemistry. 1999 Sep 28;38(39):12681-9. doi: 10.1021/bi983067w.

Abstract

Cobalt(II)-(14)N superhyperfine and (14)N nuclear quadrupole couplings in cryotrapped free and ethanolamine deaminase-bound cob(II)alamin have been characterized in the disordered solid state by using X-band electron spin-echo envelope modulation (ESEEM) spectroscopy. Enzyme-bound cob(II)alamin was cryotrapped after formation by substrate-initiated, thermally activated cleavage of the cobalt-carbon bond of adenosylcobalamin. Free dimethylbenzimidazole axial base-on cob(II)alamin was formed by photolysis of the corresponding adenosylcobalamin and cryotrapped in glycerol-aqueous glass. Three-pulse ESEEM experiments were performed by using microwave pulse excitation at the g( perpendicular) value of Co(II) at magnetic field values of 287.0 and 345.0 mT and over a range of tau values from 227 to 1316 ns. Two common sets of (14)N features are distinguished in the ESEEM spectra. One set is assigned to the remote (N1) nitrogen in the dimethylbenzimidazole alpha-axial ligand by using two independent approaches: (a) comparison of ESEEM from cob(II)alamin with ESEEM from cob(II)inamide-ligand model compounds and (b) from the correspondence between the N1 (14)N nuclear quadrupole parameters derived from ESEEM simulations and those computed by using density functional theory. The second set is assigned to the corrin ring (14)N nuclei. The results identify the coenzyme's on-board dimethylbenzimidazole moiety as the alpha-axial ligand to cob(II)alamin in ethanolamine deaminase in the substrate radical-Co(II) biradical catalytic intermediate state. Thus, Co(II) is a pentacoordinate, alpha-axial liganded complex during turnover. We infer that dimethylbenzimidazole is also the alpha-axial ligand to the intact coenzyme in the resting enzyme. A 14% increase in the isotropic hyperfine coupling of the remote dimethylbenzimidazole (14)N nucleus in enzyme-bound versus free base-on cob(II)alamin shows an enhanced delocalization of unpaired spin density from Co(II) onto the axial ligand, which would contribute to the acceleration of the cobalt-carbon bond cleavage rate in situ.

摘要

通过X波段电子自旋回波包络调制(ESEEM)光谱,对低温捕获的游离和乙醇胺脱氨酶结合的钴(II)钴胺素中的钴(II)-(14)N超超精细和(14)N核四极耦合在无序固态中进行了表征。通过底物引发的腺苷钴胺素钴-碳键的热活化裂解形成后,对酶结合的钴(II)钴胺素进行了低温捕获。游离的二甲基苯并咪唑轴向碱基在钴(II)钴胺素上是通过相应的腺苷钴胺素的光解形成的,并低温捕获在甘油-水玻璃中。在287.0和345.0 mT的磁场值下,在g(垂直)值处使用微波脉冲激发,并在227至1316 ns的一系列tau值范围内进行了三脉冲ESEEM实验。在ESEEM光谱中区分出两组常见的(14)N特征。通过两种独立的方法将一组归因于二甲基苯并咪唑α-轴向配体中的远程(N1)氮:(a)将钴(II)钴胺素的ESEEM与酰胺配体模型化合物的钴(II)的ESEEM进行比较,以及(b)从ESEEM模拟得出的N1(14)N核四极参数与使用密度泛函理论计算的参数之间的对应关系。第二组归因于咕啉环(14)N核。结果确定了辅酶的车载二甲基苯并咪唑部分是底物自由基 - 钴(II)双自由基催化中间态下乙醇胺脱氨酶中钴(II)钴胺素的α-轴向配体。因此,在周转过程中,Co(II)是一种五配位的α-轴向配位配合物。我们推断二甲基苯并咪唑也是静止酶中完整辅酶的α-轴向配体。与游离碱基在钴(II)钴胺素上相比,酶结合的远程二甲基苯并咪唑(14)N核的各向同性超精细耦合增加了14%,这表明未配对自旋密度从Co(II)到轴向配体的离域增强,这将有助于原位加速钴 - 碳键的裂解速率。

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