Data supporting A synthetic cell phage cycle
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2023-09-01
2025-09-01
2025-09-01
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Abstract
Viral infection of living cells, exemplified by bacteriophage interaction with bacteria, is fundamental to biology and universal across living systems. Here, we establish an all-cell-free viral cycle where T7 phages infect synthetic cells, equipped with lipopolysaccharides on the outer leaflet of the lipid membrane while encapsulating a cell-free gene expression system. We track each cycle step to demonstrate T7 phage-specific adsorption onto the liposomes, genome ejection, replication, expression, and assembly of new infectious virions within the synthetic cells. We quantify key characteristics of the cycle, including the multiplicity of infection, replication efficiency, liposome size constraints, and phage rebinding dynamics. This work establishes a versatile, fully defined in vitro platform for reconstructing and investigating viral infections from individual molecular components.
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This repository contains the raw experimental data associated with the publication. Data is organized into three main subfolders:
1. Sequencing: contains raw sequencing data of phage genomes used in this study.
2. Microscopy: contains raw microscopy image datasets corresponding to the figures in the main text and supplementary information.
3. SI_movies: contains supplementary movies referenced in the publication.
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National Science Foundation (CBET FMRG 2228971)
École Doctorale Frontières de l’Innovation en Recherche et Éducation—Programme Bettencourt
Bettencourt Schueller Foundation support to Engaged Life Science Department of the Learning Planet Institute
Human Frontier Science Program (LT0007/2024-L)
Fulbright France
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Levrier, Antoine; Soudier, Paul; Garenne, David; Izri, Ziane; Bowden, Steven; Lindner, Ariel B; Noireaux, Vincent. (2025). Data supporting A synthetic cell phage cycle. Retrieved from the Data Repository for the University of Minnesota (DRUM), https://doi.org/10.13020/hmz3-yf43.
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