Wang C P, Franco R, Moura J J, Moura I, Day E P
Department of Physics, Emory University, Atlanta, Georgia 30322.
J Biol Chem. 1992 Apr 15;267(11):7378-80.
The magnetic properties of the nickel(II) site in active Desulfovibrio baculatus (DSM 1743) [NiFeSe] hydrogenase have been measured using the multifield saturation magnetization technique. The periplasmic [NiFeSe] hydrogenase was isolated from bacteria grown in excess selenium in the presence of 57Fe. Saturation magnetization data were collected at three fixed fields (1.375, 2.75, 5.5 tesla) over the temperature range from 2 to 100 K. Mössbauer and EPR spectroscopies were used to characterize the magnetic state of the two [4Fe-4S] clusters of the enzyme and to quantitate the small amounts of iron impurities present in the sample. The nickel(II) site was found to be diamagnetic (low spin, S = 0). In combination with recent results from extended x-ray absorption fine structure studies, this magnetic state indicates that the nickel(II) site of active D. baculatus [NiFeSe] hydrogenase is five-coordinate.
利用多场饱和磁化技术测量了活性巴氏脱硫弧菌(DSM 1743)[NiFeSe]氢化酶中镍(II)位点的磁性。周质[NiFeSe]氢化酶是从在57Fe存在下于过量硒中生长的细菌中分离出来的。在2至100 K的温度范围内,在三个固定磁场(1.375、2.75、5.5特斯拉)下收集饱和磁化数据。利用穆斯堡尔谱和电子顺磁共振光谱对该酶的两个[4Fe-4S]簇的磁态进行表征,并对样品中存在的少量铁杂质进行定量。发现镍(II)位点是抗磁性的(低自旋,S = 0)。结合最近扩展X射线吸收精细结构研究的结果,这种磁态表明活性巴氏脱硫弧菌[NiFeSe]氢化酶的镍(II)位点是五配位的。