Department of Protein-DNA Interactions, Institute of Biotechnology Vilnius University, Graiciuno 8, LT-02241 Vilnius, Lithuania.
Nucleic Acids Res. 2012 Aug;40(14):6741-51. doi: 10.1093/nar/gks300. Epub 2012 Apr 11.
Restriction endonuclease Bse634I recognizes and cleaves the degenerate DNA sequence 5'-R/CCGGY-3' (R stands for A or G; Y for T or C, '/' indicates a cleavage position). Here, we report the crystal structures of the Bse634I R226A mutant complexed with cognate oligoduplexes containing ACCGGT and GCCGGC sites, respectively. In the crystal, all potential H-bond donor and acceptor atoms on the base edges of the conserved CCGG core are engaged in the interactions with Bse634I amino acid residues located on the α6 helix. In contrast, direct contacts between the protein and outer base pairs are limited to van der Waals contact between the purine nucleobase and Pro203 residue in the major groove and a single H-bond between the O2 atom of the outer pyrimidine and the side chain of the Asn73 residue in the minor groove. Structural data coupled with biochemical experiments suggest that both van der Waals interactions and indirect readout contribute to the discrimination of the degenerate base pair by Bse634I. Structure comparison between related enzymes Bse634I (R/CCGGY), NgoMIV (G/CCGGC) and SgrAI (CR/CCGGYG) reveals how different specificities are achieved within a conserved structural core.
Bse634I 识别并切割退化的 DNA 序列 5'-R/CCGGY-3'(R 代表 A 或 G;Y 代表 T 或 C,“/”表示切割位置)。在这里,我们报告了 Bse634I R226A 突变体与分别含有 ACCGGT 和 GCCGGC 位点的同源寡聚双链复合物的晶体结构。在晶体中,保守的 CCGG 核心碱基边缘的所有潜在氢键供体和受体原子都与位于α6 螺旋上的 Bse634I 氨基酸残基相互作用。相比之下,蛋白质与外部碱基对之间的直接接触仅限于嘌呤核苷与主沟中 Pro203 残基之间的范德华接触和外部嘧啶的 O2 原子与小沟中 Asn73 残基的侧链之间的单个氢键。结构数据结合生化实验表明,范德华相互作用和间接读取都有助于 Bse634I 对退化碱基对的识别。与相关酶 Bse634I(R/CCGGY)、NgoMIV(G/CCGGC)和 SgrAI(CR/CCGGYG)的结构比较揭示了在保守的结构核心内如何实现不同的特异性。