Meinhardt S W, Wang D C, Hon-nami K, Yagi T, Oshima T, Ohnishi T
Department of Biochemistry and Biophysics, University of Pennsylvania, Philadelphia 19104.
J Biol Chem. 1990 Jan 25;265(3):1360-8.
Five distinct low potential iron-sulfur clusters have been identified potentiometrically in the membrane particles from Thermus thermophilus HB-8. Three of these clusters (designated as [N-1H]T, [N-2H]T, and [N-3]T) exhibit the following midpoint redox potentials and g values (Em8.0 = -274 mV, gx,y,z = 1.93, 1.94, 2.02), (Em8.0 = -304 mV, gx,y,z = 1.89, 1.95, 2.04), and (Em8.0 = -289 mV, gx,y,z = 1.80, 1.83, 2.06), respectively. These clusters, one binuclear and two tetranuclear, have been shown to be components of the energy coupled NADH-menaquinone oxidoreductase complex (NADH dh I). They are reducible by NADH in the piericidin A-inhibited aerobic membrane particles as well as in the purified NADH dh I complex. Two additional very low potential iron-sulfur clusters (one binuclear, [N-1L]T, and one tetranuclear, [N-2L]T) were observed in membrane particles. These clusters possess the following physiochemical properties (Em8.0 = -418 mV, gx,y,z = 1.93, 19.5, 2.02) and (Em8.0 = -437 mV, gx,y,z = 1.89, 1.95, 2.04), respectively. No high potential tetranuclear cluster equivalent to the mitochondrial iron-sulfur cluster [N-2]B was found in this bacterial system. In membrane particles isolated from T. thermophilus HB-8 cells, four different semiquinone species have been identified based on their redox midpoint potentials [Em9(Q/QH2) = 40, -100, -160, -300 mV] and sensitivity to the quinone analogue inhibitor, 2-heptyl-4-hydroxy quinoline-N-oxide. Of these semiquinone species the -100 mV component has been suggested to be part of the NADH dehydrogenase. Piericidin A sensitive delta psi formation has been demonstrated to be coupled to the NADH-MQ1 oxidoreductase in membrane vesicles of T. thermophilus HB-8.
通过电位分析法,在嗜热栖热菌HB-8的膜颗粒中鉴定出了五个不同的低电位铁硫簇。其中三个簇(分别命名为[N-1H]T、[N-2H]T和[N-3]T)具有以下中点氧化还原电位和g值:(Em8.0 = -274 mV,gx,y,z = 1.93、1.94、2.02),(Em8.0 = -304 mV,gx,y,z = 1.89、1.95、2.04),以及(Em8.0 = -289 mV,gx,y,z = 1.80、1.83、2.06)。这些簇,一个双核和两个四核,已被证明是能量偶联的NADH-甲萘醌氧化还原酶复合物(NADH dh I)的组成部分。在粉蝶霉素A抑制的好氧膜颗粒以及纯化的NADH dh I复合物中,它们可被NADH还原。在膜颗粒中还观察到另外两个极低电位的铁硫簇(一个双核,[N-1L]T,和一个四核,[N-2L]T)。这些簇分别具有以下物理化学性质:(Em8.0 = -418 mV,gx,y,z = 1.93、19.5、2.02)和(Em8.0 = -437 mV,gx,y,z = 1.89、1.95、2.04)。在这个细菌系统中未发现与线粒体铁硫簇[N-2]B等效的高电位四核簇。在从嗜热栖热菌HB-8细胞分离的膜颗粒中,根据它们的氧化还原中点电位[Em9(Q/QH2) = 40、-100、-160、-300 mV]以及对醌类似物抑制剂2-庚基-4-羟基喹啉-N-氧化物的敏感性,鉴定出了四种不同的半醌物种。在这些半醌物种中,-100 mV的组分被认为是NADH脱氢酶的一部分。已证明在嗜热栖热菌HB-8的膜泡中,粉蝶霉素A敏感的Δψ形成与NADH-MQ1氧化还原酶偶联。