Abstract
Developing orthogonal chemical communication pathways in diverse synthetic cell communities is a considerable challenge due to the increased crosstalk and interference associated with large numbers of different types of sender-receiver pairs. Herein, the authors control which sender-receiver pairs communicate in a three-membered community of synthetic cells through red and blue light illumination. Semipermeable protein-polymer-based synthetic cells (proteinosomes) with complementary membrane-attached protein adhesion communicate through single-stranded DNA oligomers and synergistically process biochemical information within a community consisting of one sender and two different receiver populations. Different pairs of red and blue light-responsive protein-protein interactions act as membrane adhesion mediators between the sender and receivers such that they self-assemble and socially self-sort into different multicellular structures under red and blue light. Consequently, distinct sender-receiver pairs come into the signaling range depending on the light illumination and are able to communicate specifically without activation of the other receiver population. Overall, this work shows how photoswitchable membrane adhesion gives rise to different self-sorting protocell patterns that mediate member-specific DNA-based communication in ternary populations of synthetic cells and provides a step towards the design of orthogonal chemical communication networks in diverse communities of synthetic cells.
| Original language | English |
|---|---|
| Article number | e2206474 |
| Number of pages | 8 |
| Journal | Small : Nano Micro |
| Volume | 19 |
| Issue number | 13 |
| Early online date | 4 Jan 2023 |
| DOIs | |
| Publication status | Published - 29 Mar 2023 |
Funding
This work was funded by the European Research Council through the ERC Starting Grant ARTIST (#757593) and ERC Consolidator Grant AMIGA (#101000199). The authors thank Wilfried Weber and Maximilian Hörner from the University of Freiburg for providing the PhyB protein and Brian Kuhlman for the plasmids pQE‐80L iLID (C530M) and pQE‐80L MBP‐SspB Nano (Addgene # 60408 and #60409).
Keywords
- DNA-based communication
- photoswitchable proteins
- proteinosome
- self-sorting
- synthetic cells
- Membrane Proteins
- Artificial Cells/chemistry
- Cell Communication
- DNA, Single-Stranded
- Communication
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