Willie A, Stayton P S, Sligar S G, Durham B, Millett F
Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville 72701.
Biochemistry. 1992 Aug 18;31(32):7237-42. doi: 10.1021/bi00147a005.
The de novo design and synthesis of ruthenium-labeled cytochrome b5 that is optimized for the measurement of intracomplex electron transfer to cytochrome c are described. A single cysteine was substituted for Thr-65 of rat liver cytochrome b5 by recombinant DNA techniques [Stayton, P. S., Fisher, M. T., & Sligar, S. G. (1988) J. Biol. Chem. 263, 13544-13548]. The single sulfhydryl group on T65C cytochrome b5 was then labeled with [4-(bromomethyl)-4'-methylbipyridine] (bisbipyridine)ruthenium2+ to form Ru-65-cyt b5. The ruthenium group at Cys-65 is only 12 A from the heme group of cytochrome b5 but is not located at the binding site for cytochrome c. Laser excitation of the complex between Ru-65-cyt b5 and cytochrome c results in electron transfer from the excited state Ru(II*) to the heme group of Ru-65-cyt b5 with a rate constant greater than 10(6) s-1. Subsequent electron transfer from the heme group of Ru-65-cyt b5 to the heme group of cytochrome c is biphasic, with a fast-phase rate constant of (4 +/- 1) x 10(5) s-1 and a slow-phase rate constant of (3 +/- 1) x 10(4) s-1. This suggests that the complex can assume two different conformations with different electron-transfer properties. The reaction becomes monophasic and the rate constant decreases as the ionic strength is increased, indicating dissociation of the complex.(ABSTRACT TRUNCATED AT 250 WORDS)
本文描述了一种新设计并合成的钌标记细胞色素b5,它针对复合物内部向细胞色素c的电子转移测量进行了优化。通过重组DNA技术,用单个半胱氨酸取代大鼠肝细胞色素b5的苏氨酸-65 [斯泰顿,P. S.,费舍尔,M. T.,& 斯利加,S. G.(1988年)《生物化学杂志》263, 13544 - 13548]。然后用[4-(溴甲基)-4'-甲基联吡啶](双联吡啶)钌2+标记T65C细胞色素b5上的单个巯基,形成Ru - 65 - cyt b5。半胱氨酸-65处的钌基团距离细胞色素b5的血红素基团仅12埃,但不在细胞色素c的结合位点处。对Ru - 65 - cyt b5与细胞色素c之间的复合物进行激光激发,导致电子从激发态Ru(II*)转移到Ru - 65 - cyt b5的血红素基团,速率常数大于10(6) s-1。随后电子从Ru - 65 - cyt b5的血红素基团转移到细胞色素c的血红素基团是双相的,快相速率常数为(4 ± 1) x 10(5) s-1,慢相速率常数为(3 ± 1) x 10(4) s-1。这表明该复合物可以呈现两种具有不同电子转移特性的不同构象。随着离子强度增加,反应变为单相且速率常数降低,表明复合物发生了解离。(摘要截短至250字)