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来自施氏假单胞菌的一氧化氮还原酶,一种新型细胞色素bc复合物。磷脂需求、电子顺磁共振和氧化还原特性。

Nitric oxide reductase from Pseudomonas stutzeri, a novel cytochrome bc complex. Phospholipid requirement, electron paramagnetic resonance and redox properties.

作者信息

Kastrau D H, Heiss B, Kroneck P M, Zumft W G

机构信息

Universität Konstanz, Fakultät für Biologie, Germany.

出版信息

Eur J Biochem. 1994 Jun 1;222(2):293-303. doi: 10.1111/j.1432-1033.1994.tb18868.x.

Abstract

The nitric oxide reductase (NOR) from Pseudomonas stutzeri is a cytochrome bc complex which shows on SDS/PAGE two subunits with apparent molecular masses of 17 kDa and 38 kDa. Two other species of approximately 45 kDa and 74-78 kDa represent the undissociated enzyme complex and an aggregate of the cytochrome b subunit, respectively. The cytochrome b subunit is highly hydrophobic and results in aberrant electrophoretic mobility. The stability of the enzyme in various detergents and at different pH was investigated. The highest specific activity of 60 mumol NO min-1 mg-1 protein was obtained after electrophoresis in the presence of laurylpropanediol-3-phosphorylcholine ether. Purified NOR contained cardiolipin, phosphatidylglycerol, and phosphatidylethanolamine, the latter as the major component. A phospholipid was required for high catalytic activity with either cardiolipin or phosphatidylglycerol increasing the activity of the enzyme as isolated by a factor of up to 5. Free fatty acids inhibited NOR, with cis-9-octadecenoic acid (oleic acid) showing the most pronounced effect. Certain detergents substituted for the phospholipid requirement of NOR. The enzyme, as isolated, in 0.1% Triton X-100, 20 mM Tris/HCl pH 8.5, exhibited a complex set of EPR resonances at low magnetic field, with a prominent peak at g 6.34 resulting from Fe(III) high-spin cytochrome b. The second prominent feature arose from a low-spin Fe(III) heme center with strong lines at apparent g values of 3.02 and 2.29, and a broad resonance at g approximately 1.5 which we assigned to the cytochrome c component of the enzyme. From spin quantitation and computer simulations of the various EPR signals a ratio close to 1:1 for the low-spin/high-spin heme centers in NOR was estimated. Shifting the pH from 8.5 to 5.0, replacing Triton X-100 by other detergents, or adding soybean phospholipids to the protein, led to pronounced changes of the EPR signals in the g = 6 region. In contrast, the strong inhibitor oleic acid did not cause significant spectral changes. NOR which had been reduced by L-ascorbate/phenazine methosulfate prior to incubation with its substrate NO gave the characteristic Fe(II) nitrosyl triplet centered at g approximately 2.01, with a hyperfine splitting of 1.70 mT. In the absence of dioxygen, NOR was quantitatively reduced by either sodium dithionite, or photochemically with deazaflavin and oxalate; the enzyme was reoxidizable by ferricyanide in a fully reversible reaction. Spectroelectrochemical oxidoreductive titrations gave E'o (versus standard hydrogen electrode) = +322 mV for the cytochrome b and +280 mV for the cytochrome c component.

摘要

施氏假单胞菌的一氧化氮还原酶(NOR)是一种细胞色素bc复合物,在SDS/PAGE上显示出两个亚基,表观分子量分别为17 kDa和38 kDa。另外两种分子量约为45 kDa和74 - 78 kDa的物种分别代表未解离的酶复合物和细胞色素b亚基的聚集体。细胞色素b亚基具有高度疏水性,导致异常的电泳迁移率。研究了该酶在各种去污剂中以及在不同pH下的稳定性。在存在月桂基丙二醇-3-磷酸胆碱醚的情况下进行电泳后,获得了最高比活性为60 μmol NO min⁻¹ mg⁻¹蛋白质。纯化的NOR含有心磷脂、磷脂酰甘油和磷脂酰乙醇胺,后者是主要成分。高催化活性需要磷脂,心磷脂或磷脂酰甘油可使分离出的酶活性提高多达5倍。游离脂肪酸会抑制NOR,其中顺式-9-十八碳烯酸(油酸)的抑制作用最为明显。某些去污剂可替代NOR对磷脂的需求。分离出的酶在0.1% Triton X-100、20 mM Tris/HCl pH 8.5中,在低磁场下表现出一组复杂的电子顺磁共振(EPR)共振,在g = 6.34处有一个突出的峰,这是由高自旋的Fe(III)细胞色素b产生的。第二个突出特征来自一个低自旋的Fe(III)血红素中心,在表观g值为3.02和2.29处有强谱线,在g约为1.5处有一个宽共振,我们将其归因于该酶的细胞色素c成分。通过对各种EPR信号的自旋定量和计算机模拟,估计NOR中低自旋/高自旋血红素中心的比例接近1:1。将pH从8.5调至5.0、用其他去污剂替代Triton X-100或向蛋白质中添加大豆磷脂,会导致g = 6区域的EPR信号发生明显变化。相比之下,强抑制剂油酸不会引起明显的光谱变化。在与底物NO孵育之前用L-抗坏血酸/吩嗪硫酸甲酯还原的NOR,产生了以g约为2.01为中心的特征性Fe(II)亚硝酰三重态,超精细分裂为1.70 mT。在没有氧气的情况下,NOR可被连二亚硫酸钠定量还原,或用光化学方法与脱氮黄素和草酸盐还原;该酶可被铁氰化物以完全可逆的反应重新氧化。光谱电化学氧化还原滴定得出细胞色素b的E'o(相对于标准氢电极)= +322 mV,细胞色素c成分的E'o = +280 mV。

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