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Nature

a CAS Framework for Predicting the Synthetic Evolution of Anti-Plastic Enzymes

3 Juni 2025   17:54 Diperbarui: 4 Juni 2025   09:05 930
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(Tabel CAS Variables in Nonlinear Dynamic (Sumber: Pribadi))

4. Feedback Loop Between Simulation and Wet-Lab Evolution

Perhaps most significantly, CAS models enable a closed-loop design-test-learn paradigm, wherein:

Simulated motifs guide wet-lab mutagenesis

Experimental results feed back into the CAS simulation as updated constraints or priors

The system continuously refines its evolutionary heuristics, improving with each iteration

This approach bridges in silico evolution and synthetic biology, enabling faster convergence toward highly functional, environmentally deployable enzymes.

5. Toward a Predictive Ecology of Biocatalysts

In the long term, CAS modeling can contribute to a predictive ecology of biocatalysts, where we not only design enzymes for degradation but also:

Model their evolutionary stability in open ecosystems

Predict their interaction with native microbial communities

Forecast potential horizontal gene transfer risks

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