Hellwig Petra, Kriegel Sébastien, Friedrich Thorsten
Laboratoire de bioelectrochimie et spectroscopie, UMR 7140, Chimie de la Matière Complexe, Université de Strasbourg-CNRS, Strasbourg, France.
Albert-Ludwigs-Universität Freiburg, Institut für Biochemie, Albertstr. 21, 79104 Freiburg i. Br., Germany.
Biochim Biophys Acta. 2016 Jul;1857(7):922-7. doi: 10.1016/j.bbabio.2015.12.005. Epub 2015 Dec 15.
Redox-dependent conformational changes are currently discussed to be a crucial part of the reaction mechanism of the respiratory complex I. Specialized difference Fourier transform infrared techniques allow the detection of side-chain movements and minute secondary structure changes. For complex I, (1)H/(2)H exchange kinetics of the amide modes revealed a better accessibility of the backbone in the presence of NADH and quinone. Interestingly, the presence of phospholipids, that is crucial for the catalytic activity of the isolated enzyme complex, changes the overall conformation. When comparing complex I samples from different species, very similar electrochemically induced FTIR difference spectra and very similar rearrangements are reported. Finally, the information obtained with variants and from Zn(2+) inhibited samples for the conformational reorganization of complex I upon electron transfer are discussed in this review. This article is part of a Special Issue entitled Respiratory complex I, edited by Volker Zickermann and Ulrich Brandt.
目前认为氧化还原依赖性构象变化是呼吸复合体I反应机制的关键部分。专门的差分傅里叶变换红外技术能够检测侧链运动和微小的二级结构变化。对于复合体I,酰胺模式的(1)H/(2)H交换动力学表明,在存在NADH和醌的情况下,主链的可及性更好。有趣的是,对分离的酶复合体催化活性至关重要的磷脂的存在会改变整体构象。比较来自不同物种的复合体I样品时,报道了非常相似的电化学诱导FTIR差谱和非常相似的重排。最后,本文综述了用变体和锌(2+)抑制样品获得的关于复合体I在电子转移时构象重组的信息。本文是由Volker Zickermann和Ulrich Brandt编辑的名为《呼吸复合体I》的特刊的一部分。