首页> 外文期刊>Free radical research >Electron spin-labelling of the EutC subunit in B12-dependent ethanolamine ammonia-lyase reveals dynamics and a two-state conformational equilibrium in the N-terminal, signal-sequence-associated domain
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Electron spin-labelling of the EutC subunit in B12-dependent ethanolamine ammonia-lyase reveals dynamics and a two-state conformational equilibrium in the N-terminal, signal-sequence-associated domain

机译:Eutc亚单位的电子旋转标记在B12依赖性乙醇胺氨酶中揭示了N末端,信号序列相关域中的动力学和两个状态平衡

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The B12 (adenosylcobalamin)-dependent ethanolamine ammonia-lyase (EAL) is a product of the ethanolamine utilisation (eut) gene cluster, that is involved in human gut microbiome homeostasis and in disease conditions caused by pathogenic strains of Salmonella and Escherichia coli. Toward elucidation of the molecular basis of EAL catalysis, and its intracellular trafficking and targeting to the Eut biomicrocompartment (BMC), we have applied electron spin-labelling and electron paramagnetic resonance spectroscopy to wild-type (wt) EAL from Salmonella typhimurium, by using the sulphydryl-specific, 4-maleimido-TEMPO (4MT) spin label. One cysteine residue per active site displays exceptional reactivity with 4MT. This site is identified as 睠37 on the EutC subunit, by using 4MT-labeling of site-specific cysteine-to-alanine mutants, enzyme kinetics, and accessible surface area calculations. Electron paramagnetic resonance (EPR) spectra of 4MT-labelled wt EAL are collected over 200265 K in frozen, polycrystalline water-only, and 1% v/v DMSO solvents. EPR simulations reveal two mobility components for each condition. Detectable spin probe reorientational motion of the two components occurs at 215 and 225 K with 1% v/v DMSO, relative to the water-only condition, consistent with formation of an aqueous-DMSO solvent mesodomain around EAL. Parallel trends in fast- and slow-reorientational correlation times and interconversion of the two populations with increasing temperature, indicate 4MT labelling of a single site (睠37). A two-state model is proposed, in which the fast and slow motional populations represent EAL-bound and free conformations of the EutC N-terminal domain. The approximately equal proportion of each state may represent a balance between EutC and EAL protein stability and efficient targeting to the BMC. ?2017 Informa UK Limited, trading as Taylor & Francis Group.
机译:B12(腺苷钴胺) - 依赖性乙醇胺氨基酶(EAL)是乙醇胺利用(EUT)基因簇的产物,其参与人体肠道微生物骨稳态和由沙门氏菌和大肠杆菌的病原菌菌株引起的疾病病症。阐明EAL催化的分子基础,其细胞内运输和靶向EUT生物聚集酵母(BMC),我们通过使用施加电子旋转标记和电子顺磁共振光谱到野生型(WT)EAL,通过使用特异性的4-马来西米 - 速度(4MT)旋转标签。每种活性部位的一个半胱氨酸残留物显示出与4MT的特殊反应性。通过使用4MT标记的位点特异性半胱氨酸 - 丙氨酸 - 丙氨酸突变体,酶动力学和可接近的表面积计算,该部位在Eutc亚基上鉴定为眷77。 4MT标记的WT EAL的电子顺磁共振(EPR)光谱在冷冻,多晶的水中的200265 k上收集,1%v / v DMSO溶剂。 EPR模拟显示每个条件的两个移动组件。可检测的旋转探针两种组分的重新定向运动发生在215和225k,相对于仅水的条件,与eAL周围的含水-DMSO溶剂中染色域的形成一致。快速和慢速重新定位相关时间的平行趋势和两个群体随着温度升高的互联,表示单个位点的4MT标记(眷37)。提出了一种两个状态模型,其中快速和慢速运动群表示Eutc N-末端结构域的EAL-束缚和自由构象。每个状态的大致相等比例可以代表Eutc和Eal蛋白质稳定性和靶向BMC的有效靶向之间的平衡。 ?2017年Informa UK Limited,贸易为泰勒和弗朗西斯集团。

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