首页> 外文OA文献 >Electron paramagnetic resonance studies on Pseudomonas nitrosyl nitrite reductase. Evidence for multiple species in the electron paramagnetic resonance spectra of nitrosyl haemoproteins.
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Electron paramagnetic resonance studies on Pseudomonas nitrosyl nitrite reductase. Evidence for multiple species in the electron paramagnetic resonance spectra of nitrosyl haemoproteins.

机译:假单胞菌亚硝酰基亚硝酸还原酶的电子顺磁共振研究。亚硝酰血红蛋白的电子顺磁共振波谱中存在多种物种的证据。

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摘要

The e.p.r. spectra of reduced 14NO- and 15NO-bound Pseudomonas nitrite reductase have been investigated at pH 5.8 and 8.0 in four buffer systems. At pH 8.0, absorption spectra indicated that only the haem d1 was NO-bound, but, although quantification of the e.p.r. signals in all cases accounted for NO bound the the haem d1 in both subunits of the enzyme, the precise form of the signals varied with buffer and temperature. A rhombic species, with gx = 2.07, gz = 2.01 and gy = 1.96, represented in the low-temperature spectra seen in all the buffers was converted at high temperatures (approx. 200K) into a form showing a reduced anisotropy. Hyperfine splitting on the gz component of this rhombic signal indicated a nitrogen atom trans to NO and it is proposed that histidine provides the endogenous axial ligand for haem d1. At pH 5.8, absorption spectra indicated NO binding to both haems c and d1 and e.p.r. quantifications accounted for NO-bound haems c and d1 in both enzyme subunits. The e.p.r. spectra at pH 5.8 were generally similar to those at pH 8.0 with respect to g-values and hyperfine coupling constants, but were broader with less well defined hyperfine splittings. As at pH 8, rhombic signals present in spectra at low temperatures were converted to less anisotropic forms at high temperatures. The results are discussed in relation to work on model nitrosyl-protohaem complexes [Yoshimura, Ozaki, Shintani & Watanabe (1979) Arch. Biochem, Biophys. 193, 301-313]. No. e.p.r. signal was observed from oxidized NO-bound Pseudomonas nitrite reductase at pH 6.0, over the temperature range 6-100K.
机译:e.p.r.在四个缓冲液系统中,在pH 5.8和8.0下研究了还原的14NO和15NO结合的亚硝酸假单胞菌还原酶的光谱。在pH 8.0时,吸收光谱表明只有血红素dl被NO结合,但是尽管e.p.r.在所有情况下,信号均占NO限制在酶的两个亚基中的血红素d1结合,信号的精确形式随缓冲液和温度而变化。在所有缓冲液中观察到的低温光谱中,gx = 2.07,gz = 2.01和gy = 1.96的菱形物种在高温(约200K)下转化为各向异性降低的形式。在该菱形信号的gz成分上的超细分裂表明一个氮原子转化为NO,并建议组氨酸为血红素d1提供内源性轴向配体。在pH 5.8下,吸收光谱表明NO与血红素c和d1以及e.p.r结合。定量解释了两个酶亚基中NO结合的血红素c和d1。 e.p.r.就g值和超精细偶合常数而言,pH 5.8的光谱通常与pH 8.0的光谱相似,但由于定义不清的超细分裂而变得更宽。在pH值为8时,在低温下出现在光谱中的菱形信号在高温下被转换为各向异性较小的形式。讨论了有关模型亚硝酰基-prohahaem配合物的研究结果[Yoshimura,Ozaki,Shintani&Watanabe(1979)Arch。生物化学,生物物理。 193,301-313]。号e.p.r.在6-100K的温度范围内,在pH 6.0时观察到了氧化的NO结合的假单胞菌亚硝酸盐还原酶的信号。

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