Bindoli A, Callegaro M T, Barzon E, Benetti M, Rigobello M P
Centro di Studio delle Biomembrane (CNR) and Dipartimento di Chimica Biologica, Università di Padova, Padua, Italy.
Arch Biochem Biophys. 1997 Jun 1;342(1):22-8. doi: 10.1006/abbi.1997.9986.
This work addresses a correlation between the redox state of pyridine nucleotides and that of sulfhydryl groups of the mitochondrial membranes. Several major observations emerge: (1) Conditions leading to an oxidation of the pyridine nucleotides such as incubation with tert-butyl hydroperoxide or acetoacetate determine a decrease of total mitochondrial sulfhydryl groups. Glutathione does not follow the same pattern since it decreases in the presence of tert-butyl hydroperoxide but not in the presence of acetoacetate. In addition, only in the presence of tert-butyl hydroperoxide is the decrease of sulfhydryl groups concomitant with a membrane protein polymerization, observed by polyacrylamide gel electrophoresis. (2) Under all conditions tested, the oxidation of sulfhydryl groups is further stimulated by the presence of calcium and phosphate ions. (3) Respiratory substrates, which prevent the swelling of mitochondria, also partially prevent the decrease of sulfhydryl groups.
这项工作研究了吡啶核苷酸的氧化还原状态与线粒体膜巯基的氧化还原状态之间的相关性。出现了几个主要观察结果:(1) 导致吡啶核苷酸氧化的条件,如与叔丁基过氧化氢或乙酰乙酸一起孵育,会导致线粒体总巯基减少。谷胱甘肽的变化模式不同,因为它在叔丁基过氧化氢存在下会减少,但在乙酰乙酸存在下不会。此外,只有在叔丁基过氧化氢存在下,通过聚丙烯酰胺凝胶电泳观察到巯基减少与膜蛋白聚合同时发生。(2) 在所有测试条件下,钙离子和磷酸根离子的存在会进一步刺激巯基的氧化。(3) 能防止线粒体肿胀的呼吸底物,也能部分防止巯基减少。