Department of Biological Sciences, University of Pittsburgh, Pittsburgh PA 15260, USA.
Department of Biological Sciences, University of Pittsburgh, Pittsburgh PA 15260, USA; Department of Chemistry, University of Pittsburgh, Pittsburgh PA 15260, USA.
J Mol Biol. 2023 Oct 15;435(20):168261. doi: 10.1016/j.jmb.2023.168261. Epub 2023 Sep 9.
Approximately 70% of bacteriophage-encoded proteins are of unknown function. Elucidating these protein functions represents opportunities to discover new phage-host interactions and mechanisms by which the phages modulate host activities. Here, we describe a pipeline for prioritizing phage-encoded proteins for structural analysis and characterize the gp82 protein encoded by mycobacteriophage Phaedrus. Structural and solution studies of gp82 show it is a trimeric protein containing two domains. Co-precipitation studies with the host Mycobacterium smegmatis identified the ATPase MoxR as an interacting partner protein. Phaedrus gp82-MoxR interaction requires the presence of a loop sequence within gp82 that is highly exposed and disordered in the crystallographic structure. We show that Phaedrus gp82 overexpression in M. smegmatis retards the growth of M. smegmatis on solid medium, resulting in a small colony phenotype. Overexpression of gp82 containing a mutant disordered loop or the overexpression of MoxR both rescue this phenotype. Lastly, we show that recombinant gp82 reduces levels of MoxR-mediated ATPase activity in vitro that is required for its chaperone function, and that the disordered loop plays an important role in this phenotype. We conclude that Phaedrus gp82 binds to and reduces mycobacterial MoxR activity, leading to reduced function of host proteins that require MoxR chaperone activity for their normal activity.
大约 70%的噬菌体编码蛋白的功能未知。阐明这些蛋白的功能为发现新的噬菌体-宿主相互作用和噬菌体调节宿主活动的机制提供了机会。在这里,我们描述了一个针对噬菌体编码蛋白进行结构分析的优先级排序的管道,并对分枝杆菌噬菌体 Phaedrus 编码的 gp82 蛋白进行了表征。gp82 的结构和溶液研究表明,它是一种三聚体蛋白,包含两个结构域。与宿主分枝杆菌的共沉淀研究鉴定出 ATP 酶 MoxR 是一种相互作用的伴侣蛋白。Phaedrus gp82-MoxR 相互作用需要 gp82 内loop 序列的存在,该序列在晶体结构中高度暴露且无序。我们表明,分枝杆菌噬菌体 Phaedrus 在 M. smegmatis 中的过度表达会减缓 M. smegmatis 在固体培养基上的生长速度,导致菌落变小的表型。含有突变无序 loop 的 gp82 或 MoxR 的过度表达都可以挽救这种表型。最后,我们表明,重组 gp82 降低了体外 MoxR 介导的 ATP 酶活性,这对于其伴侣功能是必需的,并且无序 loop 在这种表型中发挥了重要作用。我们得出结论,Phaedrus gp82 与分枝杆菌 MoxR 结合并降低其活性,导致宿主蛋白的功能降低,这些蛋白的正常活性需要 MoxR 伴侣活性。