Shi Weiwei, Mersfelder John, Hille Russ
Department of Molecular and Cellular Biochemistry, Ohio State University, Columbus, Ohio 43210-1218, USA.
J Biol Chem. 2005 May 27;280(21):20239-46. doi: 10.1074/jbc.M500582200. Epub 2005 Mar 9.
The interaction between the physiological electron transfer partners trimethylamine dehydrogenase (TMADH) and electron-transferring flavoprotein (ETF) from Methylophilus methylotrophus has been examined with particular regard to the proposal that the former protein "imprints" a conformational change on the latter. The results indicate that the absorbance change previously attributed to changes in the environment of the FAD of ETF upon binding to TMADH is instead caused by electron transfer from partially reduced, as-isolated TMADH to ETF. Prior treatment of the as-isolated enzyme with the oxidant ferricenium essentially abolishes the observed spectral change. Further, when the semiquinone form of ETF is used instead of the oxidized form, the mirror image of the spectral change seen with as-isolated TMADH and oxidized ETF is observed. This is attributable to a small amount of electron transfer in the reverse of the physiological direction. Kinetic determination of the dissociation constant and limiting rate constant for electron transfer within the complex of (reduced) TMADH with (oxidized) ETF is reconfirmed and discussed in the context of a recently proposed model for the interaction between the two proteins that involves "structural imprinting" of ETF.
已对嗜甲基甲基ophilus的生理电子传递伙伴三甲胺脱氢酶(TMADH)和电子传递黄素蛋白(ETF)之间的相互作用进行了研究,尤其关注了前一种蛋白质会在后者上“印记”构象变化这一观点。结果表明,之前认为ETF的FAD与TMADH结合时环境变化导致的吸光度变化,实际上是由部分还原的、原样分离的TMADH向ETF的电子转移引起的。用氧化剂铁钅翁对原样分离的酶进行预处理基本上消除了观察到的光谱变化。此外,当使用ETF的半醌形式而非氧化形式时,观察到了与原样分离的TMADH和氧化ETF所看到的光谱变化的镜像。这归因于生理方向相反的少量电子转移。重新确认了(还原的)TMADH与(氧化的)ETF复合物内电子转移的解离常数和极限速率常数的动力学测定,并在最近提出的涉及ETF“结构印记”的两种蛋白质相互作用模型的背景下进行了讨论。