Tan S L, Kopczynski M G, Bachovchin W W, Orme-Johnson W H, Babior B M
J Biol Chem. 1986 Mar 15;261(8):3483-5.
During the deamination of S-2-aminopropanol by the AdoCbl-dependent ethanolamine ammonia-lyase of Clostridia sp., a catalytic intermediate accumulates whose active site contains two paramagnetic species: cob(II)alamin and a free radical derived from the substrate molecule. Spin-echo spectroscopy has revealed that the unpaired electron on the substrate-derived radical is delocalized over a nitrogen atom that from its quadrupole splittings is probably a component of a secondary amide group. Experiments with 15N- and deuterium-labeled propanolamine gave no evidence of an interaction between this unpaired electron and the nitrogen originally attached to the substrate molecule. These results strongly suggest that the substrate-derived radical in this intermediate has already lost its nitrogen, and that this radical is stabilized by delocalization of the unpaired electron onto a nitrogen most likely situated in one of the peptide bonds of the enzyme backbone.
在梭状芽孢杆菌属依赖腺苷钴胺素的乙醇胺氨裂解酶对S-2-氨基丙醇进行脱氨基作用的过程中,会积累一种催化中间体,其活性位点包含两种顺磁物质:钴胺素(II)和源自底物分子的自由基。自旋回波光谱显示,底物衍生自由基上的未成对电子离域在一个氮原子上,从其四极分裂来看,该氮原子可能是仲酰胺基团的一个组成部分。用15N和氘标记的丙醇胺进行的实验没有提供该未成对电子与最初连接在底物分子上的氮之间存在相互作用的证据。这些结果强烈表明,该中间体中源自底物的自由基已经失去了其氮,并且该自由基通过未成对电子离域到最有可能位于酶主链肽键之一中的氮上而得以稳定。