Saito Hirohide, Suga Hiroaki
Department of Chemistry, State University of New York at Buffalo, Buffalo, NY 14260-3000, USA.
Nucleic Acids Res. 2002 Dec 1;30(23):5151-9. doi: 10.1093/nar/gkf641.
Metal ions are essential cofactors for various ribozymes. Here we dissect the roles of metal ions in an aminoacyl-tRNA synthetase-like ribozyme (ARS ribozyme), which was evolved in vitro. This ribozyme can charge phenylalanine on tRNA in cis, where it is covalently attached to the 5'-end of tRNA (i.e. a form of precursor tRNA), as well as in trans, where it can act as a catalyst. The presence of magnesium ion is essential for this ribozyme to exhibit full catalytic activity. Metal-dependent kinetics, as well as structural mappings using Tb3+ in competition with Mg2+ or Co(NH3)6(3+), identified two potential metal-binding sites which are embedded near the tRNA-binding site. The high affinity metal-binding site can be filled with either Mg2+ or Co(NH3)6(3+) and thus the activity relies on a metal ion that is fully coordinated with water or ammonium ions. This site also overlaps with the amino acid-binding site, suggesting that the metal ion plays a role in constituting the catalytic core. The weak metal-binding site is occupied only by a metal ion(s) that can form innersphere contacts with ligands in the ribozyme and, hence, Mg2+ can enhance ribozyme activity, but Co(NH3)6(3+) cannot. The experiments described in this work establish the roles of metal ions that have distinct coordination properties in the ARS ribozyme.
金属离子是各种核酶必不可少的辅助因子。在此,我们剖析了金属离子在体外进化出的一种氨酰 - tRNA合成酶样核酶(ARS核酶)中的作用。这种核酶能够在顺式反应中,将苯丙氨酸加载到与tRNA 5'-末端共价连接的tRNA(即前体tRNA的一种形式)上,也能在反式反应中作为催化剂发挥作用。镁离子的存在对于该核酶展现出完全的催化活性至关重要。通过金属依赖性动力学以及使用Tb3+与Mg2+或Co(NH3)6(3+)竞争进行的结构映射,确定了两个潜在的金属结合位点,它们位于tRNA结合位点附近。高亲和力金属结合位点可以被Mg2+或Co(NH3)6(3+)占据,因此其活性依赖于与水或铵离子完全配位的金属离子。该位点还与氨基酸结合位点重叠,这表明金属离子在构成催化核心中发挥作用。弱金属结合位点仅被能够与核酶中的配体形成内球接触的金属离子占据,因此Mg2+可以增强核酶活性,而Co(NH3)6(3+)则不能。这项工作中描述的实验确定了具有不同配位特性的金属离子在ARS核酶中的作用。