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首页> 外文期刊>Biochemistry >PULSED ELECTRON PARAMAGNETIC RESONANCE STUDIES OF THE LYSINE 2,3-AMINOMUTASE SUBSTRATE RADICAL - EVIDENCE FOR PARTICIPATION OF PYRIDOXAL 5'-PHOSPHATE IN A RADICAL REARRANGEMENT
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PULSED ELECTRON PARAMAGNETIC RESONANCE STUDIES OF THE LYSINE 2,3-AMINOMUTASE SUBSTRATE RADICAL - EVIDENCE FOR PARTICIPATION OF PYRIDOXAL 5'-PHOSPHATE IN A RADICAL REARRANGEMENT

机译:赖氨酸2,3-氨基突变酶底物自由基的脉冲电子顺磁共振研究-证明吡乙醛5'-磷酸参与了自由基重排。

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摘要

The role of pyridoxal 5'-phosphate (PLP) in the radical-mediated amino group migration catalyzed by lysine 2,3-aminomutase from Clostridia SB4 has been investigated by electron spin echo envelope modulation (ESEEM) spectroscopy, This pulsed electron paramagnetic resonance (EPR) method was used to estimate the distance between the unpaired electron in the alpha-radical of beta-lysine, a steady-state intermediate in the reaction, and deuterium at the C4' position of the cofactor, PLP. [4'-H-2]PLP was synthesized and exchanged into the enzyme, The steady-state radical was generated in the labeled samples and in samples with unlabeled PLP by addition of L-lysine . H2SO4 to activated enzyme. ESEEM spectra of the samples prepared with [4'-?H]PLP exhibited distinctive low-frequency modulations that were not present in spectra of matched samples with unlabeled PLP. Fourier transformation of the modulations yielded a prominent doubler signal centered about the Larmor frequency of deuterium. The magnitude of the doublet splitting of the H-2 ESEEM signal exhibited angle selection across the CW EPR powder pattern. The observed angle selection, as well as simulation of the time domain spectra, indicated that the doublet splitting was due to the combined effects of the H-2 hyperfine and nuclear quadrupole interactions. The influences of the quadrupole interaction and of isotropic and dipolar hyperfine interactions were explored by simulations of the ESEEM spectra. The analysis indicates a distance of <3.5 Angstrom between the H-2 at C4' of PLP and the radical center at C alpha lysine. The data are most compatible with an aldimine linkage between PLP and the beta-nitrogen of beta-lysine. These data support the proposed radical rearrangement mechanism, wherein PLP promotes the reaction by formation of an aldimine linkage to the migrating nitrogen.
机译:通过电子自旋回波包络调制(ESEEM)光谱研究了吡ido醛5'-磷酸酯(PLP)在由梭状芽胞杆菌SB4的赖氨酸2,3-氨基变位酶催化的自由基介导的氨基迁移中的作用,该脉冲电子顺磁共振( EPR)方法用于估计反应中的稳态中间体β-赖氨酸的α自由基中未配对电子与辅助因子PLP的C4'位置处的氘之间的距离。合成了[4'-H-2] PLP并交换为酶,通过添加L-赖氨酸在标记的样品和未标记的PLP样品中生成稳态自由基。用H2SO4活化酶。用[4'-ΔH] PLP制备的样品的ESEEM光谱表现出独特的低频调制,而未标记PLP的匹配样品的光谱中不存在这种低频调制。调制的傅立叶变换产生了一个以氘的拉莫尔频率为中心的突出的倍频信号。 H-2 ESEEM信号的双峰分裂幅度显示出在CW EPR粉末图案上的角度选择。观察到的角度选择以及时域谱的模拟表明,双峰分裂是由于H-2超细分子与核四极相互作用的综合作用所致。通过ESEEM谱的模拟,探索了四极相互作用以及各向同性和偶极超精细相互作用的影响。分析表明,PLP C4'处的H-2与C alpha赖氨酸处的自由基中心之间的距离<3.5埃。数据与PLP和β-赖氨酸的β-氮之间的醛亚胺键最兼容。这些数据支持提出的自由基重排机制,其中PLP通过形成与迁移氮原子相连的醛亚胺键促进反应。

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