Grazulis Saulius, Deibert Markus, Rimseliene Renata, Skirgaila Remigijus, Sasnauskas Giedrius, Lagunavicius Arunas, Repin Vladimir, Urbanke Claus, Huber Robert, Siksnys Virginijus
Max-Planck Institut für Biochemie, Abt. Strukturforschung, Am Klopferspitz 18a, D-82152 Martinsried (bei München), Germany.
Nucleic Acids Res. 2002 Feb 15;30(4):876-85. doi: 10.1093/nar/30.4.876.
Crystal structures of Type II restriction endonucleases demonstrate a conserved common core and active site residues but diverse structural elements involved in DNA sequence discrimination. Comparative structural analysis of restriction enzymes recognizing the same nucleotide sequence might therefore contribute to our understanding of the structural diversity of specificity determinants within restriction enzymes. We have solved the crystal structure of the Bacillus stearothermophilus restriction endonuclease Bse634I by the multiple isomorphous replacement technique to 2.17 A resolution. Bse634I is an isoschisomer of the Cfr10I restriction enzyme whose crystal structure has been reported previously. Comparative structural analysis of the first pair of isoschisomeric enzymes revealed conserved structural determinants of sequence recognition and catalysis. However, conformations of the N-terminal subdomains differed between Bse634I/Cfr10I, suggesting a rigid body movement that might couple DNA recognition and catalysis. Structural similarities extend to the quaternary structure level: crystal contacts suggest that Bse634I similarly to Cfr10I is arranged as a tetramer. Kinetic analysis reveals that Bse634I is able to interact simultaneously with two recognition sites supporting the tetrameric architecture of the protein. Thus, restriction enzymes Bse634I, Cfr10I and NgoMIV, recognizing overlapping nucleotide sequences, exhibit a conserved tetrameric architecture that is of functional importance.
II型限制性内切核酸酶的晶体结构显示出保守的共同核心和活性位点残基,但参与DNA序列识别的结构元件各不相同。因此,对识别相同核苷酸序列的限制性酶进行比较结构分析,可能有助于我们理解限制性酶中特异性决定因素的结构多样性。我们通过多同晶置换技术解析了嗜热脂肪芽孢杆菌限制性内切核酸酶Bse634I的晶体结构,分辨率达到2.17 Å。Bse634I是Cfr10I限制性酶的同裂酶,其晶体结构此前已有报道。对第一对同裂酶的比较结构分析揭示了序列识别和催化的保守结构决定因素。然而,Bse634I/Cfr10I之间N端亚结构域的构象不同,表明可能存在一种刚体运动,它可能将DNA识别与催化联系起来。结构相似性延伸到四级结构水平:晶体接触表明Bse634I与Cfr10I类似,是以四聚体形式排列的。动力学分析表明,Bse634I能够同时与两个识别位点相互作用,这支持了该蛋白的四聚体结构。因此,识别重叠核苷酸序列的限制性酶Bse634I、Cfr10I和NgoMIV呈现出一种具有功能重要性的保守四聚体结构。