Mutet C, Crémel G, Waksman A
Biochem Biophys Res Commun. 1984 Aug 16;122(3):1404-9. doi: 10.1016/0006-291x(84)91247-6.
Paramagnetic labels specific for sulfhydryl (SH) groups have been used to study the conformational changes of the inner mitochondrial membrane. The EPR spectra of the SH-groups spin-labeled with maleimide or iodoacetamide show the existence of two populations of sulfhydryl groups, differing in their mobility (one weakly, the other strongly immobilized). The incubation with succinate or phenylsuccinate decreased the binding of these labels of the weakly immobilized sites while the number of total SH groups was the same before and after the incubation. These results suggest that succinate or phenylsuccinate induce a reversible change in protein conformation or in protein arrangement within the inner mitochondrial membrane. This change is concomitant to the protein movement between inner membrane and perimembranal space induced by either of these two molecules.
巯基(SH)特异性的顺磁标记物已被用于研究线粒体内膜的构象变化。用马来酰亚胺或碘乙酰胺自旋标记的SH基团的电子顺磁共振光谱表明存在两种不同流动性的巯基群体(一种弱,另一种强烈固定)。与琥珀酸或苯琥珀酸孵育会降低这些标记物与弱固定位点的结合,而孵育前后总SH基团的数量相同。这些结果表明,琥珀酸或苯琥珀酸会在线粒体内膜内诱导蛋白质构象或蛋白质排列的可逆变化。这种变化与这两种分子中的任何一种诱导的内膜与膜周空间之间的蛋白质移动同时发生。