Pierik A J, Hagen W R, Redeker J S, Wolbert R B, Boersma M, Verhagen M F, Grande H J, Veeger C, Mutsaers P H, Sands R H
Department of Biochemistry, Agricultural University, Wageningen, The Netherlands.
Eur J Biochem. 1992 Oct 1;209(1):63-72. doi: 10.1111/j.1432-1033.1992.tb17261.x.
The periplasmic Fe-hydrogenase from Desulfovibrio vulgaris (Hildenborough) contains three iron-sulfur prosthetic groups: two putative electron transferring [4Fe-4S] ferredoxin-like cubanes (two F-clusters), and one putative Fe/S supercluster redox catalyst (one H-cluster). Combined elemental analysis by proton-induced X-ray emission, inductively coupled plasma mass spectrometry, instrumental neutron activation analysis, atomic absorption spectroscopy and colorimetry establishes that elements with Z > 21 (except for 12-15 Fe) are present in 0.001-0.1 mol/mol quantities, not correlating with activity. Isoelectric focussing reveals the existence of multiple charge conformers with pI in the range 5.7-6.4. Repeated re-chromatography results in small amounts of enzyme of very high H2-production activity determined under standardized conditions (approximately 7000 U/mg). The enzyme exists in two different catalytic forms: as isolated the protein is 'resting' and O2-insensitive; upon reduction the protein becomes active and O2-sensitive. EPR-monitored redox titrations have been carried out of both the resting and the activated enzyme. In the course of a reductive titration, the resting protein becomes activated and begins to produce molecular hydrogen at the expense of reduced titrant. Therefore, equilibrium potentials are undefined, and previously reported apparent Em and n values [Patil, D. S., Moura, J. J. G., He, S. H., Teixeira, M, Prickril, B. C., DerVartanian, D. V., Peck, H. D. Jr, LeGall, J. & Huynh, B.-H. (1988) J. Biol. Chem. 263, 18,732-18,738] are not thermodynamic quantities. In the activated enzyme an S = 1/2 signal (g = 2.11, 2.05, 2.00; 0.4 spin/protein molecule), attributed to the oxidized H cluster, exhibits a single reduction potential, Em,7 = -307 mV, just above the onset potential of H2 production. The midpoint potential of the two F clusters (2.0 spins/protein molecule) has been determined either by titrating active enzyme with the H2/H+ couple (E,m = -330 mV) or by dithionite-titrating a recombinant protein that lacks the H-cluster active site (Em,7.5 = -340 mV). There is no significant redox interaction between the two F clusters (n approximately 1).
来自普通脱硫弧菌(希登伯勒菌株)的周质铁氢化酶含有三种铁硫辅基:两个假定的电子传递[4Fe-4S]类铁氧化还原蛋白立方烷(两个F簇),以及一个假定的Fe/S超簇氧化还原催化剂(一个H簇)。通过质子诱导X射线发射、电感耦合等离子体质谱、仪器中子活化分析、原子吸收光谱和比色法进行的联合元素分析表明,原子序数Z>21的元素(除了12 - 15个铁原子)的含量为0.001 - 0.1摩尔/摩尔,与活性无关。等电聚焦揭示了存在多个电荷构象体,其pI在5.7 - 6.4范围内。重复进行再色谱分离会得到少量在标准化条件下测定具有非常高的产氢活性的酶(约7000 U/mg)。该酶以两种不同的催化形式存在:刚分离时蛋白质处于“静止”状态且对氧气不敏感;还原后蛋白质变得有活性且对氧气敏感。已对静止和活化的酶进行了电子顺磁共振监测的氧化还原滴定。在还原滴定过程中,静止的蛋白质被激活并开始以还原滴定剂为代价产生分子氢。因此,平衡电位是不确定的,并且先前报道的表观Em和n值[帕蒂尔,D.S.,莫拉,J.J.G.,何,S.H.,特谢拉,M,普里克里尔,B.C.,德尔瓦尔塔尼安,D.V.,佩克,H.D. Jr,勒加尔,J. & 胡恩,B.-H.(1988年)《生物化学杂志》263卷,18732 - 18738页]不是热力学量。在活化的酶中,一个归因于氧化态H簇的S = 1/2信号(g = 2.11、2.05、2.00;0.4自旋/蛋白质分子)表现出单一的还原电位,Em,7 = -307 mV,刚好高于产氢的起始电位。两个F簇(2.0自旋/蛋白质分子)的中点电位已通过用H2/H+电对滴定活性酶(Em = -330 mV)或通过连二亚硫酸盐滴定缺乏H簇活性位点的重组蛋白(Em,7.5 = -340 mV)来确定。两个F簇之间没有明显的氧化还原相互作用(n约为1)。