Telser J, Benecky M J, Adams M W, Mortenson L E, Hoffman B M
J Biol Chem. 1986 Oct 15;261(29):13536-41.
Previous Mössbauer and electron nuclear double resonance (ENDOR) studies of oxidized hydrogenase I (bidirectional) from Clostridium pasteurianum W5 demonstrated that this enzyme contains two diamagnetic [4Fe-4S]2+ clusters and an iron-sulfur center of unknown structure and composition that is characterized by its novel Mössbauer and ENDOR properties. In the present study we combine ENDOR and EPR measurements to show that the novel cluster contains 3-4 iron atoms. In addition, we have used EPR and ENDOR spectroscopies to investigate the effect of binding the competitive inhibitor carbon monoxide to oxidized hydrogenase I, using 13C-labeled CO and enzyme isotopically enriched in 57Fe. Treatment of oxidized enzyme with CO causes the g-tensor of the paramagnetic center to change from rhombic to axial symmetry. The observation of a 13C signal by ENDOR spectroscopy and analysis of the EPR broadening show that a single CO covalently binds to the paramagnetic center. The 13C hyperfine coupling constant (Ac approximately equal to 21 MHz) is within the range observed for inorganic iron-carbonyl clusters. The observation of 57Fe ENDOR signals from two types of iron site ([A1c] approximately 30-34 MHz; [A2c] approximately 6 MHz) and resolved 57Fe hyperfine interactions in the EPR spectrum from two nuclei characterized by [A1c] confirm that the iron-sulfur cluster remains intact upon CO coordination, but show that CO binding greatly changes the 57Fe hyperfine coupling constants.
此前对巴氏梭菌W5的氧化型双向氢化酶I进行的穆斯堡尔谱和电子核双共振(ENDOR)研究表明,该酶含有两个抗磁性的[4Fe-4S]2+簇以及一个结构和组成未知的铁硫中心,其具有独特的穆斯堡尔谱和ENDOR特性。在本研究中,我们结合ENDOR和EPR测量结果,表明这个新的簇含有3 - 4个铁原子。此外,我们利用EPR和ENDOR光谱学,使用13C标记的CO以及富含57Fe同位素的酶,研究了竞争性抑制剂一氧化碳与氧化型氢化酶I结合的影响。用CO处理氧化型酶会使顺磁中心的g张量从菱形对称变为轴向对称。通过ENDOR光谱观察到13C信号,并对EPR展宽进行分析,结果表明单个CO共价结合到顺磁中心。13C超精细偶合常数(Ac约等于21 MHz)在无机铁羰基簇所观察到的范围内。从两种类型的铁位点观察到57Fe ENDOR信号([A1c]约为30 - 34 MHz;[A2c]约为6 MHz),并且在EPR谱中从以[A1c]为特征的两个原子核分辨出57Fe超精细相互作用,这证实了在CO配位后铁硫簇保持完整,但表明CO结合极大地改变了57Fe超精细偶合常数。