CEB - Centre of Biological Engineering, University of Minho, Campus de Gualtar, 4710-057 Braga, Portugal.
Laboratory of Microbiology, Wageningen University and Research Centre, Stippeneng 4, 6708 WE Wageningen, The Netherlands.
Sci Rep. 2016 Dec 15;6:39235. doi: 10.1038/srep39235.
Orally administered phages to control zoonotic pathogens face important challenges, mainly related to the hostile conditions found in the gastrointestinal tract (GIT). These include temperature, salinity and primarily pH, which is exceptionally low in certain compartments. Phage survival under these conditions can be jeopardized and undermine treatment. Strategies like encapsulation have been attempted with relative success, but are typically complex and require several optimization steps. Here we report a simple and efficient alternative, consisting in the genetic engineering of phages to display lipids on their surfaces. Escherichia coli phage T7 was used as a model and the E. coli PhoE signal peptide was genetically fused to its major capsid protein (10 A), enabling phospholipid attachment to the phage capsid. The presence of phospholipids on the mutant phages was confirmed by High Performance Thin Layer Chromatography, Dynamic Light Scattering and phospholipase assays. The stability of phages was analysed in simulated GIT conditions, demonstrating improved stability of the mutant phages with survival rates 10-10 pfu.mL higher than wild-type phages. Our work demonstrates that phage engineering can be a good strategy to improve phage tolerance to GIT conditions, having promising application for oral administration in veterinary medicine.
经口给予噬菌体以控制人畜共患病病原体面临着重要的挑战,主要与胃肠道 (GIT) 中发现的恶劣条件有关。这些条件包括温度、盐度和主要的 pH 值,某些部位的 pH 值非常低。噬菌体在这些条件下的生存可能受到威胁,并破坏治疗效果。已经尝试了一些策略,如封装,相对取得了一些成功,但通常比较复杂,需要经过几个优化步骤。在这里,我们报告了一种简单而有效的替代方法,即通过基因工程使噬菌体在表面展示脂质。我们以大肠杆菌噬菌体 T7 为模型,将大肠杆菌 PhoE 信号肽基因融合到其主要衣壳蛋白 (10A) 上,使磷脂附着在噬菌体衣壳上。通过高效薄层色谱、动态光散射和磷脂酶实验证实了突变噬菌体表面存在磷脂。在模拟 GIT 条件下分析了噬菌体的稳定性,结果表明突变噬菌体的稳定性得到了提高,存活率比野生型噬菌体高 10-10 pfu.mL。我们的工作表明,噬菌体工程可以作为提高噬菌体对 GIT 条件的耐受性的一种有效策略,在兽医领域的口服给药方面具有广阔的应用前景。