Hwang Y, Park M, Fischer W H, Burgin A, Bushman F
Infectious Disease Laboratory, The Salk Institute for Biological Studies, La Jolla, California, 92037, USA.
Virology. 1999 Sep 30;262(2):479-91. doi: 10.1006/viro.1999.9920.
All poxviruses studied encode a type 1B topoisomerase that introduces transient nicks into DNA and thereby relaxes DNA supercoils. Here we present a study of the protein domains of the topoisomerase of the poxvirus molluscum contagiosum (MCV), which allows us to specify DNA contacts made by different domains. Partial proteolysis of the enzyme revealed two stable domains separated by a protease-sensitive linker. A fragment encoding the linker and carboxyl-terminal domain (residues 82-323) was overexpressed in Escherichia coli and purified. MCV topoisomerase (MCV-TOP)(82-323) could relax supercoiled plasmids in vitro, albeit with a slower rate than the wild-type enzyme. MCV-TOP(82-323) was sensitive to sequences in the favored 5'-(T/C)CCTT-3' recognition site and also flanking DNA, indicating that some of the sequence-specific contacts are made by residues 82-323. Assays of initial binding and covalent catalysis by MCV-TOP(82-323) identified the contacts flanking the 5'-CCCTT-3' sequence at +10, +9, -2, and -3 to be important. Tests with substrates containing a 5-bridging phosphorothiolate that trap the cleaved complex revealed that correct contacts to the flanking sequences were important in the initial cleavage step. MCV-TOP(82-323) differed from the full-length protein in showing reduced sensitivity to mutations at a position within the 5'-(T/C)CCTT-3' recognition site, consistent with a model in which the amino-terminal domain contacts this region. These findings provide insight into the division of labor within the MCV-TOP enzyme.
所有已研究的痘病毒都编码一种1B型拓扑异构酶,该酶可在DNA中引入瞬时切口,从而使DNA超螺旋松弛。在此,我们展示了一项关于痘病毒传染性软疣(MCV)拓扑异构酶蛋白结构域的研究,这使我们能够明确不同结构域与DNA的接触情况。对该酶进行部分蛋白酶解后,发现了两个稳定的结构域,中间由一个对蛋白酶敏感的连接区隔开。编码连接区和羧基末端结构域(第82 - 323位氨基酸)的片段在大肠杆菌中过表达并纯化。MCV拓扑异构酶(MCV-TOP)(82 - 323)在体外能够使超螺旋质粒松弛,尽管其速率比野生型酶慢。MCV-TOP(82 - 323)对其偏好的5'-(T/C)CCTT-3'识别位点及侧翼DNA序列敏感,这表明第82 - 323位氨基酸残基形成了一些序列特异性接触。对MCV-TOP(82 - 323)的初始结合和共价催化分析表明,5'-CCCTT-3'序列侧翼在+10、+9、-2和-3位置的接触很重要。用含有5'-桥连硫代磷酸酯的底物进行测试,该底物可捕获切割复合物,结果表明在初始切割步骤中与侧翼序列的正确接触很重要。MCV-TOP(82 - 323)与全长蛋白不同,它对5'-(T/C)CCTT-3'识别位点内某一位置的突变敏感性降低,这与氨基末端结构域接触该区域的模型一致。这些发现为深入了解MCV-TOP酶内部分工提供了线索。