Halgasova Nora, Solteszova Barbora, Pevala Vladimír, Košťan Július, Kutejová Eva, Bukovska Gabriela
Department of Genomics and Biotechnology, Institute of Molecular Biology, Slovak Academy of Sciences, Dubravska cesta 21, 845 51 Bratislava, Slovakia.
Department of Biochemistry and Structural Biology, Institute of Molecular Biology, Slovak Academy of Sciences, Dubravska cesta 21, 845 51 Bratislava, Slovakia.
Virus Res. 2015 Dec 2;210:178-87. doi: 10.1016/j.virusres.2015.08.011. Epub 2015 Aug 12.
Phage BFK20 replication protein gp43 comprises an N-terminal prim-pol domain and a C-terminal domain similar to replicative helicases. We prepared and studied two recombinant proteins: gp43-1 containing both prim-pol and helicase domains, and gp43C with the helicase domain only. A SEC-MALS analysis indicated that gp43-1 forms a hexameric homooligomer. NTPase activity testing revealed that gp43-1 was able to hydrolyze a wide spectrum of NTPs, ATP the most efficiently. The ATPase activity of gp43-1 was strongly dependent on the presence of ssDNA in the reaction, but was low in the presence of dsDNA and in the absence of DNA. On the other hand, the ATPase activity of gp43C was very low regardless of the presence of DNA. The helicase activity of gp43-1 was detected using a fluorescence-based assay with a forked DNA substrate in the presence of ATP. However, no helicase activity could be detected for gp43C. We therefore conclude that the prim-pol domain is essential for the helicase and ssDNA-dependent ATPase activity of gp43-1.
噬菌体BFK20复制蛋白gp43由一个N端引物-聚合酶结构域和一个与复制解旋酶相似的C端结构域组成。我们制备并研究了两种重组蛋白:包含引物-聚合酶和解旋酶结构域的gp43-1,以及仅含解旋酶结构域的gp43C。尺寸排阻色谱-多角度激光光散射(SEC-MALS)分析表明,gp43-1形成六聚体同源寡聚体。NTPase活性测试表明,gp43-1能够水解多种NTP,其中对ATP的水解效率最高。gp43-1的ATPase活性强烈依赖于反应中ssDNA的存在,但在dsDNA存在和无DNA的情况下活性较低。另一方面,无论DNA是否存在,gp43C的ATPase活性都非常低。在ATP存在的情况下,使用基于荧光的叉状DNA底物检测法检测到了gp43-1的解旋酶活性。然而,未检测到gp43C的解旋酶活性。因此,我们得出结论,引物-聚合酶结构域对于gp43-1的解旋酶和ssDNA依赖性ATPase活性至关重要。