Author
Listed:
- Liangfei Tian
(University of Bristol)
- Mei Li
(University of Bristol)
- Avinash J. Patil
(University of Bristol)
- Bruce W. Drinkwater
(University of Bristol)
- Stephen Mann
(University of Bristol)
Abstract
The design and assembly of artificial protocell consortia displaying dynamical behaviours and systems-based properties are emerging challenges in bottom-up synthetic biology. Cellular processes such as morphogenesis and differentiation rely in part on reaction-diffusion gradients, and the ability to mimic rudimentary aspects of these non-equilibrium processes in communities of artificial cells could provide a step to life-like systems capable of complex spatiotemporal transformations. Here we expose acoustically formed arrays of initially identical coacervate micro-droplets to uni-directional or counter-directional reaction-diffusion gradients of artificial morphogens to induce morphological differentiation and spatial patterning in single populations of model protocells. Dynamic reconfiguration of the droplets in the morphogen gradients produces a diversity of membrane-bounded vesicles that are spontaneously segregated into multimodal populations with differentiated enzyme activities. Our results highlight the opportunities for constructing protocell arrays with graded structure and functionality and provide a step towards the development of artificial cell platforms capable of multiple operations.
Suggested Citation
Liangfei Tian & Mei Li & Avinash J. Patil & Bruce W. Drinkwater & Stephen Mann, 2019.
"Artificial morphogen-mediated differentiation in synthetic protocells,"
Nature Communications, Nature, vol. 10(1), pages 1-13, December.
Handle:
RePEc:nat:natcom:v:10:y:2019:i:1:d:10.1038_s41467-019-11316-4
DOI: 10.1038/s41467-019-11316-4
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