Kurihara H, Nonaka T, Mitsui Y, Ohgi K, Irie M, Nakamura K T
Department of BioEngineering, Nagaoka University of Technology, Japan.
J Mol Biol. 1996 Jan 19;255(2):310-20. doi: 10.1006/jmbi.1996.0025.
The three-dimensional structure of ribonuclease Rh (RNase Rh), a new class of microbial ribonuclease from Rhizopus niveus, has been determined at 2.0 A resolution. The overall structure of RNase Rh is completely different from those of other previously studied RNases, such as RNase A from bovine pancreas and RNase T1 from Aspergillus oryzae. In the structure of RNase Rh, two histidine residues (His46 and His109) and one glutamic acid residue (Glu105), which were predicted to be critical to the activity from the chemical modification and mutagenesis experiments, are found to be located close together, constructing the active site. The indole ring of Trp49 plays an important role in preserving the active site structure by its stacking interactions with the imidazole ring of His 109, and by hydrogen bonding with the carboxyl group of Glu105. There exists a hydrophobic pocket around the active site, which contains the aromatic side-chain of Trp49 and Tyr57. The results of mutagenesis studies suggest that this pocket is the base binding site of the substrate.
来自雪白根霉的新型微生物核糖核酸酶核糖核酸酶Rh(RNase Rh)的三维结构已在2.0埃分辨率下确定。RNase Rh的整体结构与其他先前研究的核糖核酸酶完全不同,如牛胰腺的核糖核酸酶A和米曲霉的核糖核酸酶T1。在RNase Rh的结构中,化学修饰和诱变实验预测对活性至关重要的两个组氨酸残基(His46和His109)和一个谷氨酸残基(Glu105)紧密相邻,构成了活性位点。Trp49的吲哚环通过与His 109的咪唑环的堆积相互作用以及与Glu105的羧基的氢键作用,在维持活性位点结构中发挥重要作用。活性位点周围存在一个疏水口袋,其中包含Trp49和Tyr57的芳香族侧链。诱变研究结果表明,这个口袋是底物的碱基结合位点。