Department of Chemistry, Tunghai University, Taichung, Taiwan.
Department of Environmental Science and Engineering, Taichung, Taiwan.
Sci Rep. 2021 Jan 13;11(1):1090. doi: 10.1038/s41598-020-79905-8.
Cardiolipin (CL), a crucial component in inner mitochondrial membranes, interacts with cytochrome c (cyt c) to form a peroxidase complex for the catalysis of CL oxidation. Such interaction is pivotal to the mitochondrial regulation of apoptosis and is affected by the redox state of cyt c. In the present study, the redox-dependent interaction of cyt c with CL was investigated through amide hydrogen/deuterium exchange coupled with mass spectrometry (HDXMS) and quartz crystal microbalance with dissipation monitoring (QCM-D). Ferrous cyt c exhibited a more compact conformation compared with its ferric form, which was supported by the lower number of deuterons accumulated and the greater amplitude reduction on dissipation. Upon association with CL, ferrous cyt c resulted in a moderate increase in deuteration, whereas the ferric form caused a drastic increase of deuteration, which indicated that CL-bound ferric cyt c formed an extended conformation. These results were consistent with those of the frequency (f) - dissipation (D) experiments, which revealed that ferric cyt c yielded greater values of |ΔD/Δf| within the first minute. Further fragmentation analysis based on HDXMS indicated that the effect of CL binding was considerably different on ferric and ferrous cyt c in the C-helix and the Loop 9-24. In ferric cyt c, CL binding affected Met80 and destabilized His18 interaction with heme, which was not observed with ferrous cyt c. An interaction model was proposed to explain the aforementioned results.
心磷脂(CL)是线粒体内膜的重要组成部分,它与细胞色素 c(cyt c)相互作用形成过氧化物酶复合物,以催化 CL 的氧化。这种相互作用对于线粒体调控细胞凋亡至关重要,并且受到 cyt c 的氧化还原状态的影响。在本研究中,通过酰胺氢/氘交换结合质谱(HDXMS)和石英晶体微天平耗散监测(QCM-D)研究了 cyt c 与 CL 的氧化还原依赖性相互作用。与 ferric 形式相比,ferrous cyt c 表现出更紧凑的构象,这得到了积累的氘原子数量较少和耗散振幅更大的支持。与 CL 结合后,ferrous cyt c 导致氘化程度适度增加,而 ferric 形式则导致氘化程度急剧增加,这表明 CL 结合的 ferric cyt c 形成了扩展构象。这些结果与频率(f)-耗散(D)实验的结果一致,该实验表明 ferric cyt c 在第一分钟内产生了更大的 |ΔD/Δf| 值。基于 HDXMS 的进一步片段分析表明,CL 结合对 C 螺旋和 Loop 9-24 中的 ferric 和 ferrous cyt c 的影响有很大的不同。在 ferric cyt c 中,CL 结合影响 Met80 并破坏 His18 与血红素的相互作用,而在 ferrous cyt c 中则没有观察到这种作用。提出了一个相互作用模型来解释上述结果。