Basran J, Jang M H, Sutcliffe M J, Hille R, Scrutton N S
Department of Biochemistry, University of Leicester, University Road, Leicester LE1 7RH, United Kingdom.
J Biol Chem. 1999 May 7;274(19):13155-61. doi: 10.1074/jbc.274.19.13155.
Tyr-169 in trimethylamine dehydrogenase is one component of a triad also comprising residues His-172 and Asp-267. Its role in catalysis and in mediating the magnetic interaction between FMN cofactor and the 4Fe/4S center have been investigated by stopped-flow and EPR spectroscopy of a Tyr-169 to Phe (Y169F) mutant of the enzyme. Tyr-169 is shown to play an important role in catalysis (mutation to phenylalanine reduces the limiting rate constant for bleaching of the active site flavin by about 100-fold) but does not serve as a general base in the course of catalysis. In addition, we are able to resolve two kinetically influential ionizations involved in both the reaction of free enzyme with free substrate (as reflected in klim/Kd), and in the breakdown of the Eox.S complex (as reflected in klim). In EPR studies of the Y169F mutant, it is found that the ability of the Y169F enzyme to form the spin-interacting state between flavin semiquinone and reduced 4Fe/4S center characteristic of wild-type enzyme is significantly compromised. The present results are consistent with Tyr-169 representing the ionizable group of pKa approximately 9.5, previously identified in pH-jump studies of electron transfer, whose deprotonation must occur for the spin-interacting state to be established.
三甲胺脱氢酶中的Tyr-169是一个三联体的组成部分,该三联体还包括His-172和Asp-267残基。通过对该酶的Tyr-169突变为苯丙氨酸(Y169F)的突变体进行停流光谱和电子顺磁共振光谱研究,探究了其在催化作用以及介导黄素单核苷酸(FMN)辅因子与4Fe/4S中心之间磁相互作用中的作用。结果表明,Tyr-169在催化过程中起重要作用(突变为苯丙氨酸会使活性位点黄素漂白的极限速率常数降低约100倍),但在催化过程中不作为一般碱。此外,我们能够解析出两个对动力学有影响的电离过程,它们分别涉及游离酶与游离底物的反应(如在klim/Kd中反映)以及Eox.S复合物的分解(如在klim中反映)。在对Y169F突变体的电子顺磁共振研究中发现,Y169F酶形成野生型酶特有的黄素半醌与还原型4Fe/4S中心之间自旋相互作用状态的能力显著受损。目前的结果与Tyr-169代表pKa约为9.5的可电离基团这一观点一致,该基团先前在电子转移的pH跃变研究中已被确定,其去质子化对于建立自旋相互作用状态是必需的。