Biotechnology, Department of Chemistry, Lund University, PO Box 124, 221 00 Lund, Sweden.
SARomics Biostructures, Medicon Village, 223 81 Lund, Sweden.
Acta Crystallogr D Struct Biol. 2022 Feb 1;78(Pt 2):212-227. doi: 10.1107/S2059798321012298. Epub 2022 Jan 24.
This study describes the production, characterization and structure determination of a novel Holliday junction-resolving enzyme. The enzyme, termed Hjc_15-6, is encoded in the genome of phage Tth15-6, which infects Thermus thermophilus. Hjc_15-6 was heterologously produced in Escherichia coli and high yields of soluble and biologically active recombinant enzyme were obtained in both complex and defined media. Amino-acid sequence and structure comparison suggested that the enzyme belongs to a group of enzymes classified as archaeal Holliday junction-resolving enzymes, which are typically divalent metal ion-binding dimers that are able to cleave X-shaped dsDNA-Holliday junctions (Hjs). The crystal structure of Hjc_15-6 was determined to 2.5 Å resolution using the selenomethionine single-wavelength anomalous dispersion method. To our knowledge, this is the first crystal structure of an Hj-resolving enzyme originating from a bacteriophage that can be classified as an archaeal type of Hj-resolving enzyme. As such, it represents a new fold for Hj-resolving enzymes from phages. Characterization of the structure of Hjc_15-6 suggests that it may form a dimer, or even a homodimer of dimers, and activity studies show endonuclease activity towards Hjs. Furthermore, based on sequence analysis it is proposed that Hjc_15-6 has a three-part catalytic motif corresponding to E-SD-EVK, and this motif may be common among other Hj-resolving enzymes originating from thermophilic bacteriophages.
本研究描述了一种新型 Holliday 连接体分解酶的产生、特性和结构确定。该酶被命名为 Hjc_15-6,编码在感染嗜热栖热菌的噬菌体 Tth15-6 的基因组中。Hjc_15-6 在大肠杆菌中异源表达,并在复杂和定义的培养基中均获得了可溶性和生物活性的重组酶的高产。氨基酸序列和结构比较表明,该酶属于一组被归类为古菌 Holliday 连接体分解酶的酶,这些酶通常是二价金属离子结合的二聚体,能够切割 X 形 dsDNA-Holliday 连接体(Hjs)。使用硒代蛋氨酸单波长反常散射方法,将 Hjc_15-6 的晶体结构确定至 2.5 Å分辨率。据我们所知,这是第一个源自噬菌体的可归类为古菌类型的 Hj 连接体分解酶的晶体结构。因此,它代表了噬菌体来源的 Hj 连接体分解酶的一种新折叠。Hjc_15-6 的结构特征表明它可能形成二聚体,甚至是二聚体的同源二聚体,并且活性研究表明其对 Hjs 具有内切核酸酶活性。此外,基于序列分析,提出 Hjc_15-6 具有三部分催化基序对应于 E-SD-EVK,并且该基序可能在其他源自嗜热噬菌体的 Hj 连接体分解酶中是常见的。