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维生素B12辅酶依赖性乙醇胺脱氨酶中底物自由基与5'-脱氧腺苷-5'-甲基基团的相互作用。

Interaction of the substrate radical and the 5'-deoxyadenosine-5'-methyl group in vitamin B(12) coenzyme-dependent ethanolamine deaminase.

作者信息

Warncke K, Utada A S

机构信息

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

出版信息

J Am Chem Soc. 2001 Sep 5;123(35):8564-72. doi: 10.1021/ja003658l.

DOI:10.1021/ja003658l
PMID:11525664
Abstract

The distance and relative orientation of the C5' methyl group of 5'-deoxyadenosine and the substrate radical in vitamin B(12) coenzyme-dependent ethanolamine deaminase from Salmonella typhimurium have been characterized by using X-band two-pulse electron spin-echo envelope modulation (ESEEM) spectroscopy in the disordered solid state. The (S)-2-aminopropanol-generated substrate radical catalytic intermediate was prepared by cryotrapping steady-state mixtures of enzyme in which catalytically exchangeable hydrogen sites in the active site had been labeled by previous turnover on (2)H(4)-ethanolamine. Simulation of the time- and frequency-domain ESEEM requires two types of coupled (2)H. The strongly coupled (2)H has an effective dipole distance (r(eff)) of 2.2 A, and isotropic coupling constant (A(iso)) of -0.35 MHz. The weakly coupled (2)H has r(eff) = 3.8 A and A(iso) = 0 MHz. The best (2)H ESEEM time- and frequency-domain simulations are achieved with a model in which the hyperfine couplings arise from one strongly coupled hydrogen site and two equivalent weakly coupled hydrogen sites located on the C5' methyl group of 5'-deoxyadenosine. This model indicates that the unpaired electron on C1 of the substrate radical and C5' are separated by 3.2 A and are thus at closest contact. The close proximity of C1 and C5' indicates that C5' of the 5'-deoxyadenosyl moiety directly mediates radical migration between cobalt in cobalamin and the substrate/product site over a distance of 5-7 A in the active site of ethanolamine deaminase.

摘要

利用X波段双脉冲电子自旋回波包络调制(ESEEM)光谱,在无序固态中表征了鼠伤寒沙门氏菌维生素B12辅酶依赖性乙醇胺脱氨酶中5'-脱氧腺苷的C5'甲基与底物自由基的距离和相对取向。通过冷冻捕获酶的稳态混合物制备了(S)-2-氨基丙醇生成的底物自由基催化中间体,其中活性位点中可催化交换的氢位点已通过先前在(2)H(4)-乙醇胺上的周转进行了标记。时域和频域ESEEM的模拟需要两种类型的耦合(2)H。强耦合(2)H的有效偶极距离(r(eff))为2.2 Å,各向同性耦合常数(A(iso))为-0.35 MHz。弱耦合(2)H的r(eff) = 3.8 Å,A(iso) = 0 MHz。使用一种模型可实现最佳的(2)H ESEEM时域和频域模拟,其中超精细耦合来自位于5'-脱氧腺苷C5'甲基上的一个强耦合氢位点和两个等效的弱耦合氢位点。该模型表明,底物自由基C1上的未配对电子与C5'相隔3.2 Å,因此处于最紧密接触状态。C1和C5'的紧密接近表明,5'-脱氧腺苷部分的C5'在乙醇胺脱氨酶活性位点中,在钴胺素中的钴与底物/产物位点之间,直接介导了5-7 Å距离上的自由基迁移。

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