Naknaen Ampapan, Samernate Thanadon, Saeju Panida, Nonejuie Poochit, Chaikeeratisak Vorrapon
Department of Biochemistry, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.
Institute of Molecular Biosciences, Mahidol University, Nakhon Pathom, Thailand.
iScience. 2024 Apr 18;27(5):109790. doi: 10.1016/j.isci.2024.109790. eCollection 2024 May 17.
With the recent resurgence of phage therapy in modern medicine, jumbophages are currently under the spotlight due to their numerous advantages as anti-infective agents. However, most significant discoveries to date have primarily focused on nucleus-forming jumbophages, not their non-nucleus-forming counterparts. In this study, we compare the biological characteristics exhibited by two genetically diverse jumbophages: 1) the well-studied nucleus-forming jumbophage, PhiKZ; and 2) the newly discovered non-nucleus-forming jumbophage, Callisto. Single-cell infection studies further show that Callisto possesses different replication machinery, resulting in a delay in phage maturation compared to that of PhiKZ. The therapeutic potency of both phages was examined and , demonstrating that PhiKZ holds certain superior characteristics over Callisto. This research sheds light on the importance of the subcellular infection machinery and the organized progeny maturation process, which could potentially provide valuable insight in the future development of jumbophage-based therapeutics.
随着噬菌体疗法在现代医学中的近期复兴,巨型噬菌体因其作为抗感染剂的众多优势而成为当前的焦点。然而,迄今为止,大多数重大发现主要集中在形成核的巨型噬菌体上,而非其不形成核的同类噬菌体。在本研究中,我们比较了两种基因不同的巨型噬菌体所展现的生物学特性:1)经过充分研究的形成核的巨型噬菌体PhiKZ;以及2)新发现的不形成核的巨型噬菌体Callisto。单细胞感染研究进一步表明,Callisto拥有不同的复制机制,与PhiKZ相比,这导致噬菌体成熟延迟。对两种噬菌体的治疗效力进行了检测,结果表明PhiKZ相对于Callisto具有某些优越特性。这项研究揭示了亚细胞感染机制和有组织的子代成熟过程的重要性,这可能为基于巨型噬菌体的治疗方法的未来发展提供有价值的见解。