Institute of Toxicology and Genetics, Karlsruhe Institute of Technology, Karlsruhe, Germany.
Adv Virus Res. 2012;83:219-98. doi: 10.1016/B978-0-12-394438-2.00006-2.
Bacteriophages T7, λ, P22, and P2/P4 (from Escherichia coli), as well as ϕ29 (from Bacillus subtilis), are among the best-studied bacterial viruses. This chapter summarizes published protein interaction data of intraviral protein interactions, as well as known phage-host protein interactions of these phages retrieved from the literature. We also review the published results of comprehensive protein interaction analyses of Pneumococcus phages Dp-1 and Cp-1, as well as coliphages λ and T7. For example, the ≈55 proteins encoded by the T7 genome are connected by ≈43 interactions with another ≈15 between the phage and its host. The chapter compiles published interactions for the well-studied phages λ (33 intra-phage/22 phage-host), P22 (38/9), P2/P4 (14/3), and ϕ29 (20/2). We discuss whether different interaction patterns reflect different phage lifestyles or whether they may be artifacts of sampling. Phages that infect the same host can interact with different host target proteins, as exemplified by E. coli phage λ and T7. Despite decades of intensive investigation, only a fraction of these phage interactomes are known. Technical limitations and a lack of depth in many studies explain the gaps in our knowledge. Strategies to complete current interactome maps are described. Although limited space precludes detailed overviews of phage molecular biology, this compilation will allow future studies to put interaction data into the context of phage biology.
T7、λ、P22 和 P2/P4(均来自大肠杆菌)以及 ϕ29(来自枯草芽孢杆菌)噬菌体是研究最为透彻的细菌病毒。本章总结了文献中报道的这些噬菌体的病毒内蛋白相互作用以及已知噬菌体-宿主蛋白相互作用的已发表蛋白相互作用数据。我们还综述了肺炎球菌噬菌体 Dp-1 和 Cp-1 以及大肠杆菌噬菌体 λ 和 T7 的综合蛋白相互作用分析的已发表结果。例如,T7 基因组编码的约 55 种蛋白通过约 43 种相互作用与噬菌体和其宿主之间的另外约 15 种相互作用相连接。本章汇总了文献中报道的 λ噬菌体(33 种病毒内/22 种噬菌体-宿主)、P22 噬菌体(38/9)、P2/P4 噬菌体(14/3)和 ϕ29 噬菌体(20/2)的相互作用。我们讨论了不同的相互作用模式是否反映了不同的噬菌体生活方式,或者它们是否可能是采样的人为产物。感染同一宿主的噬菌体可以与不同的宿主靶蛋白相互作用,例如大肠杆菌噬菌体 λ 和 T7。尽管经过数十年的深入研究,我们只了解这些噬菌体相互作用组的一小部分。技术限制和许多研究的深度不足解释了我们知识中的空白。描述了完成当前相互作用图谱的策略。尽管篇幅有限,无法详细介绍噬菌体分子生物学,但本汇编将使未来的研究能够将相互作用数据置于噬菌体生物学的背景下。