Konev S V, Beljanovich L M, Rudenok A N
Institute of Photobiology, Belarus National Academy of Sciences, Minsk.
Membr Cell Biol. 1998;12(5):743-54.
Electron transfer activity of isolated cytochrome oxidase inhibited by low concentrations of cyanide by 93-95% was shown to rise no less than three times under exposure to visible light. Irradiation with visible light was found to increase the rate of reduction of cytochrome oxidase heme groups in the presence of sodium dithionite. Based on these results, it is suggested that the modification of the catalytic and spectral characteristic of the cytochrome oxidase-cyanide complex is due to the photostimulation of the intramolecular electron transport at the interheme (heme a heme a3) transfer stage, i.e., is caused by photoreduction of the enzyme's heme a3-CN complex.
低浓度氰化物可抑制分离出的细胞色素氧化酶的电子转移活性达93% - 95%,结果表明,在可见光照射下,其电子转移活性可提高至少三倍。研究发现,在连二亚硫酸钠存在的情况下,可见光照射可提高细胞色素氧化酶血红素基团的还原速率。基于这些结果,有人提出,细胞色素氧化酶 - 氰化物复合物的催化和光谱特性的改变是由于在血红素间(血红素a - 血红素a3)转移阶段分子内电子传递受到光刺激,即由该酶的血红素a3 - CN复合物的光还原引起。