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Photoswitchable gating of non-equilibrium enzymatic feedback in chemically communicating polymersome nanoreactors
by
Wang, Richard
, Najer, Adrian
, Zhou, Kun
, Dell, Tristan N
, Chami, Mohamed
, Thanapongpibul, Chalaisorn
, Mann, Stephen
, de Alaniz, Javier Read
, Stevens, Molly M
, Rifaie-Graham, Omar
, Adrianus, Christopher
, Sun, Rujie
, Yeow, Jonathan
in
Adducts
/ Chemical communication
/ Circadian rhythm
/ Circadian rhythms
/ Communication
/ Control systems
/ Control theory
/ Controllability
/ Coupling
/ Enzymes
/ Equilibrium
/ Esterase
/ Feedback
/ Feedback loops
/ Hydrogels
/ Membranes
/ Metabolites
/ Negative feedback
/ Organelles
/ Oscillations
/ pH effects
/ Robotics
/ Urease
2023
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Photoswitchable gating of non-equilibrium enzymatic feedback in chemically communicating polymersome nanoreactors
by
Wang, Richard
, Najer, Adrian
, Zhou, Kun
, Dell, Tristan N
, Chami, Mohamed
, Thanapongpibul, Chalaisorn
, Mann, Stephen
, de Alaniz, Javier Read
, Stevens, Molly M
, Rifaie-Graham, Omar
, Adrianus, Christopher
, Sun, Rujie
, Yeow, Jonathan
in
Adducts
/ Chemical communication
/ Circadian rhythm
/ Circadian rhythms
/ Communication
/ Control systems
/ Control theory
/ Controllability
/ Coupling
/ Enzymes
/ Equilibrium
/ Esterase
/ Feedback
/ Feedback loops
/ Hydrogels
/ Membranes
/ Metabolites
/ Negative feedback
/ Organelles
/ Oscillations
/ pH effects
/ Robotics
/ Urease
2023
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Photoswitchable gating of non-equilibrium enzymatic feedback in chemically communicating polymersome nanoreactors
by
Wang, Richard
, Najer, Adrian
, Zhou, Kun
, Dell, Tristan N
, Chami, Mohamed
, Thanapongpibul, Chalaisorn
, Mann, Stephen
, de Alaniz, Javier Read
, Stevens, Molly M
, Rifaie-Graham, Omar
, Adrianus, Christopher
, Sun, Rujie
, Yeow, Jonathan
in
Adducts
/ Chemical communication
/ Circadian rhythm
/ Circadian rhythms
/ Communication
/ Control systems
/ Control theory
/ Controllability
/ Coupling
/ Enzymes
/ Equilibrium
/ Esterase
/ Feedback
/ Feedback loops
/ Hydrogels
/ Membranes
/ Metabolites
/ Negative feedback
/ Organelles
/ Oscillations
/ pH effects
/ Robotics
/ Urease
2023
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Photoswitchable gating of non-equilibrium enzymatic feedback in chemically communicating polymersome nanoreactors
Journal Article
Photoswitchable gating of non-equilibrium enzymatic feedback in chemically communicating polymersome nanoreactors
2023
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Overview
The circadian rhythm generates out-of-equilibrium metabolite oscillations that are controlled by feedback loops under light/dark cycles. Here we describe a non-equilibrium nanosystem comprising a binary population of enzyme-containing polymersomes capable of light-gated chemical communication, controllable feedback and coupling to macroscopic oscillations. The populations consist of esterase-containing polymersomes functionalized with photo-responsive donor–acceptor Stenhouse adducts (DASA) and light-insensitive semipermeable urease-loaded polymersomes. The DASA–polymersome membrane becomes permeable under green light, switching on esterase activity and decreasing the pH, which in turn initiates the production of alkali in the urease-containing population. A pH-sensitive pigment that absorbs green light when protonated provides a negative feedback loop for deactivating the DASA–polymersomes. Simultaneously, increased alkali production deprotonates the pigment, reactivating esterase activity by opening the membrane gate. We utilize light-mediated fluctuations of pH to perform non-equilibrium communication between the nanoreactors and use the feedback loops to induce work as chemomechanical swelling/deswelling oscillations in a crosslinked hydrogel. We envision possible applications in artificial organelles, protocells and soft robotics.The circadian rhythm generates out-of-equilibrium metabolite oscillations controlled by feedback loops under light/dark cycles. Now, it has been shown that these life-like properties can emerge from a non-equilibrium nanosystem comprising a binary population of enzyme-containing polymersomes capable of light-gated chemical communication, controllable feedback and coupling to macroscopic oscillations.
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