Chon Hyongi, Matsumura Hiroyoshi, Koga Yuichi, Takano Kazufumi, Kanaya Shigenori
Department of Material and Life Science, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
J Mol Biol. 2006 Feb 10;356(1):165-78. doi: 10.1016/j.jmb.2005.11.017. Epub 2005 Nov 28.
Ribonuclease HIII (Bst-RNase HIII) from the moderate thermophile Bacillus stearothermophilus is a type 2 RNase H but shows poor amino acid sequence identity with another type 2 RNase H, RNase HII. It is composed of 310 amino acid residues and acts as a monomer. Bst-RNase HIII has a large N-terminal extension with unknown function and a unique active-site motif (DEDE), both of which are characteristics common to RNases HIII. To understand the role of these N-terminal extension and active-site residues, the crystal structure of Bst-RNase HIII was determined in both metal-free and metal-bound forms at 2.1-2.6 angstroms resolutions. According to these structures, Bst-RNase HIII consists of the N-terminal domain and C-terminal RNase H domain. The structures of the N and C-terminal domains were similar to those of TATA-box binding proteins and archaeal RNases HII, respectively. The steric configurations of the four conserved active-site residues were very similar to those of other type 1 and type 2 RNases H. Single Mn and Mg ions were coordinated with Asp97, Glu98, and Asp202, which correspond to Asp10, Glu48, and Asp70 of Escherichia coli RNase HI, respectively. The mutational studies indicated that the replacement of either one of these residues with Ala resulted in a great reduction of the enzymatic activity. Overproduction, purification, and characterization of the Bst-RNase HIII derivatives with N and/or C-terminal truncations indicated that the N-terminal domain and C-terminal helix are involved in substrate binding, but the former contributes to substrate binding more greatly than the latter.
嗜热脂肪芽孢杆菌(Bacillus stearothermophilus)来源的核糖核酸酶HIII(Bst-RNase HIII)是一种2型核糖核酸酶H,但与另一种2型核糖核酸酶H(核糖核酸酶HII)的氨基酸序列一致性较差。它由310个氨基酸残基组成,以单体形式发挥作用。Bst-RNase HIII具有功能未知的大的N端延伸和独特的活性位点基序(DEDE),这两者都是核糖核酸酶HIII共有的特征。为了了解这些N端延伸和活性位点残基的作用,以2.1-2.6埃的分辨率测定了无金属和金属结合形式的Bst-RNase HIII的晶体结构。根据这些结构,Bst-RNase HIII由N端结构域和C端核糖核酸酶H结构域组成。N端和C端结构域的结构分别与TATA盒结合蛋白和古细菌核糖核酸酶HII的结构相似。四个保守活性位点残基的空间构型与其他1型和2型核糖核酸酶H的非常相似。单个锰离子和镁离子分别与Asp97、Glu98和Asp202配位,它们分别对应于大肠杆菌核糖核酸酶HI的Asp10、Glu48和Asp70。突变研究表明,用丙氨酸取代这些残基中的任何一个都会导致酶活性大幅降低。对具有N端和/或C端截短的Bst-RNase HIII衍生物的过量表达、纯化和表征表明,N端结构域和C端螺旋参与底物结合,但前者对底物结合的贡献比后者更大。