Pfeiffer M, Klein A, Steinert P, Schomburg D
Department of Biology, University of Marburg, Germany.
Biofactors. 1995;5(4):157-68.
The 25 amino acid long subunit VhuU of the F420-non-reducing hydrogenase from Methanococcus voltae contains selenocysteine within the consensus sequence of known [NiFe] hydrogenases DP(C or U)CxxCxxH (U = selenocysteine). The sulfur-analogue VhuUc was chemically synthesized, purified and its metal binding capability, the catalytic properties, and structural features were investigated. The polypeptide was able to bind nickel, but did not catalyse the heterolytic activation of H2. 2D-NMR spectroscopy revealed an alpha-helical secondary structure for the 15 N-terminal amino acids in 50% TFE. Nickel only binds to the C-terminus, which contains the conserved amino acid motif. Structures derived from the NMR data are compatible with the participation of both sulfur atoms from the conserved cysteine residues in a metal ion binding. Structures obtained from the data sets for Ni.VhuUc as well as Zn.VhuUc showed no further ligands. The informational value for Ni.VhuUc was low due to paramagnetism.
沃氏甲烷球菌F420-非还原型氢化酶25个氨基酸长的亚基VhuU在已知的[NiFe]氢化酶DP(C或U)CxxCxxH(U = 硒代半胱氨酸)的共有序列中含有硒代半胱氨酸。化学合成并纯化了硫类似物VhuUc,并研究了其金属结合能力、催化特性和结构特征。该多肽能够结合镍,但不催化H2的异裂活化。二维核磁共振光谱揭示了在50%三氟乙醇中15个N端氨基酸的α-螺旋二级结构。镍仅结合到含有保守氨基酸基序的C端。从核磁共振数据推导的结构与来自保守半胱氨酸残基的两个硫原子参与金属离子结合的情况相符。从Ni.VhuUc以及Zn.VhuUc的数据集获得的结构未显示出其他配体。由于顺磁性,Ni.VhuUc的信息价值较低。