Structure of the unusual seryl-tRNA synthetase reveals a distinct zinc-dependent mode of substrate recognition

被引:80
作者
Bilokapic, Silvija
Maier, Timm
Ahel, Dragana
Gruic-Sovulj, Ita
Soell, Dieter
Weygand-Durasevic, Ivana
Ban, Nenad
机构
[1] ETH Honggerberg, Swiss Fed Inst Technol, Inst Mol Biol & Biophys, CH-8093 Zurich, Switzerland
[2] Univ Zagreb, Dept Chem, Zagreb 41000, Croatia
[3] Yale Univ, Dept Mol Biophys & Biochem, New Haven, CT USA
关键词
protein synthesis; RNA; tRNA synthetases; X-ray crystallography;
D O I
10.1038/sj.emboj.7601129
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Methanogenic archaea possess unusual seryl-tRNA synthetase ( SerRS), evolutionarily distinct from the SerRSs found in other archaea, eucaryotes and bacteria. The two types of SerRSs show only minimal sequence similarity, primarily within class II conserved motifs 1, 2 and 3. Here, we report a 2.5 angstrom resolution crystal structure of the atypical methanogenic Methanosarcina barkeri SerRS and its complexes with ATP, serine and the non-hydrolysable seryl-adenylate analogue 5'-O-(N-serylsulfamoyl) adenosine. The structures reveal two idiosyncratic features of methanogenic SerRSs: a novel N-terminal tRNA-binding domain and an active site zinc ion. The tetra-coordinated Zn2+ ion is bound to three conserved protein ligands ( Cys306, Glu355 and Cys461) and binds the amino group of the serine substrate. The absolute requirement of the metal ion for enzymatic activity was confirmed by mutational analysis of the direct zinc ion ligands. This zinc-dependent serine recognition mechanism differs fundamentally from the one employed by the bacterial-type SerRSs. Consequently, SerRS represents the only known aminoacyl-tRNA synthetase system that evolved two distinct mechanisms for the recognition of the same amino-acid substrate.
引用
收藏
页码:2498 / 2509
页数:12
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