Hauenstein Scott I, Hou Ya-Ming, Perona John J
Department of Chemistry and Biochemistry and Interdepartmental Program in Biomolecular Science and Engineering, University of California, Santa Barbara, California 93106-9510, USA.
J Biol Chem. 2008 Aug 8;283(32):21997-2006. doi: 10.1074/jbc.M801838200. Epub 2008 Jun 17.
Synthesis of cysteinyl-tRNA(Cys) in methanogenic archaea proceeds by a two-step pathway in which tRNA(Cys) is first aminoacylated with phosphoserine by phosphoseryl-tRNA synthetase (SepRS). Characterization of SepRS from the mesophile Methanosarcina mazei by gel filtration and nondenaturing mass spectrometry shows that the native enzyme exists as an alpha4 tetramer when expressed at high levels in Escherichia coli. However, active site titrations monitored by ATP/PP(i) burst kinetics, together with analysis of tRNA binding stoichiometry by fluorescence spectroscopy, show that the tetrameric enzyme binds two tRNAs and that only two of the four chemically equivalent subunits catalyze formation of phosphoseryl adenylate. Therefore, the phenomenon of half-of-the-sites activity, previously described for synthesis of 1 mol of tyrosyl adenylate by the dimeric class I tyrosyl-tRNA synthetase, operates as well in this homotetrameric class II tRNA synthetase. Analysis of cognate and noncognate reactions by ATP/PP(i) and aminoacylation kinetics strongly suggests that SepRS is able to discriminate against the noncognate amino acids glutamate, serine, and phosphothreonine without the need for a separate hydrolytic editing site. tRNA(Cys) binding to SepRS also enhances the capacity of the enzyme to discriminate among amino acids, indicating the existence of functional connectivity between the tRNA and amino acid binding sites of the enzyme.
产甲烷古菌中半胱氨酰 - tRNA(Cys)的合成通过两步途径进行,其中tRNA(Cys)首先由磷酸丝氨酰 - tRNA合成酶(SepRS)用磷酸丝氨酸进行氨酰化。通过凝胶过滤和非变性质谱对嗜温菌马氏甲烷八叠球菌的SepRS进行表征表明,当在大肠杆菌中高水平表达时,天然酶以α4四聚体形式存在。然而,通过ATP / PP(i)猝发动力学监测的活性位点滴定,以及通过荧光光谱分析tRNA结合化学计量,表明四聚体酶结合两个tRNA,并且四个化学等价亚基中只有两个催化磷酸丝氨酰腺苷酸的形成。因此,先前在二聚体I类酪氨酰 - tRNA合成酶合成1摩尔酪氨酰腺苷酸时所描述的半位点活性现象,在这种同四聚体II类tRNA合成酶中也起作用。通过ATP / PP(i)和氨酰化动力学对同源和非同源反应的分析强烈表明,SepRS能够区分非同源氨基酸谷氨酸、丝氨酸和磷酸苏氨酸,而无需单独的水解编辑位点。tRNA(Cys)与SepRS的结合也增强了该酶区分氨基酸的能力,表明该酶的tRNA和氨基酸结合位点之间存在功能连接。