Cammack R, Palmer J M
Biochem J. 1977 Sep 15;166(3):347-55. doi: 10.1042/bj1660347.
X-band electron-paramagnetic-resonance spectroscopy at 4.2--77K combined with measurements of oxidation-reduction potential was used to identify iron--sulphur centres in Arum maculatum (cuckoo-pint) mitochondria. In the oxidized state a signal with a derivative maximum at g = 2.02 was assigned to succinate dehydrogenase centre S-3. Unreduced particles showed additional signals at g = 2.04 and 1.98 (at 9.2 GHz), which may be due to a spin-spin interaction. In the reduced state a prominent signal at g = 1.93 and 2.02 was resolved into at least three components that could be assigned to centres S-1 and S-2 of succinate dehydrogenase (midpoint potentials -7 and -240 mV respectively at pH 7.2) and a small amount of centre N-1b (e'o= -240 mV) of NADH-ubiquinone reductase. In addition, changes in line shape around -10 mV indicated the presence of a fourth component in this signal. The latter was more readily reduced by NADH than by succinate, suggesting that it might be associated with the external NADH dehydrogenase. The iron-sulphur centres of NADH-ubiquinone reductase were present in an unusually low concentration, indicating that the alternative, non-phosphorylating, NADH dehydrogenase containing a low number of iron-sulphur centres may be responsible for most of the high rate of oxidation of NADH.
在4.2 - 77K温度下进行的X波段电子顺磁共振光谱分析,结合氧化还原电位测量,被用于鉴定斑叶疆南星(天南星科植物)线粒体中的铁硫中心。在氧化状态下,g = 2.02处具有导数最大值的信号被归属于琥珀酸脱氢酶中心S - 3。未还原的颗粒在g = 2.04和1.98(9.2 GHz)处显示出额外的信号,这可能归因于自旋 - 自旋相互作用。在还原状态下,g = 1.93和2.02处的一个显著信号被解析为至少三个成分,它们可被归属于琥珀酸脱氢酶的中心S - 1和S - 2(在pH 7.2时中点电位分别为 - 7和 - 240 mV)以及少量的NADH - 泛醌还原酶的中心N - 1b(e'o = - 240 mV)。此外,在 - 10 mV附近的线形变化表明该信号中存在第四个成分。后者被NADH还原比被琥珀酸还原更容易,这表明它可能与外部NADH脱氢酶有关。NADH - 泛醌还原酶的铁硫中心以异常低的浓度存在,这表明含有少量铁硫中心的替代的、非磷酸化的NADH脱氢酶可能是NADH高氧化速率的主要原因。