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Mostrati risultati da 1 a 4 di 4
Development of an Escherichia coli platform to exploit higher L-threonine production for high value-added chemicals
2025 Sassi, T; Brambilla, L; Rebuzzini, G; Teusink, B; Vanoni, M
A Computational Approach for Threonine Accumulation in Escherichia coli and Its Integration as a Platform for Biosynthesis of High-Value Fine Chemicals
2025 Sassi, T; Brambilla, L; Rebuzzini, G; Vanoni, M
Adaptive Laboratory Evolution and Carbon/Nitrogen Imbalance Promote High-Yield Ammonia Release in Saccharomyces cerevisiae
2025 Pessina, A; Giancontieri, A; Sassi, T; Busti, S; Vanoni, M; Brambilla, L
Computational study of the structure and catalytic mechanism of xylene monooxygenase from Pseudomonas putida
2024 Sassi, T; Arrigoni, F; Bertini, L; Rizza, F; Rebuzzini, G; Vanoni, M; Brambilla, L
| Titolo | Tipologia | Data di pubblicazione | Autori | File |
|---|---|---|---|---|
| Development of an Escherichia coli platform to exploit higher L-threonine production for high value-added chemicals | 02 - Intervento a convegno | 2025 | Sassi, TBrambilla, LGRebuzzini, GVanoni, ME + | |
| A Computational Approach for Threonine Accumulation in Escherichia coli and Its Integration as a Platform for Biosynthesis of High-Value Fine Chemicals | 99 - Altro | 2025 | Sassi, TBrambilla, LGVanoni, M + | |
| Adaptive Laboratory Evolution and Carbon/Nitrogen Imbalance Promote High-Yield Ammonia Release in Saccharomyces cerevisiae | 01 - Articolo su rivista | 2025 | Pessina, ASassi, TBusti, SVanoni, MBrambilla, L. + | |
| Computational study of the structure and catalytic mechanism of xylene monooxygenase from Pseudomonas putida | 02 - Intervento a convegno | 2024 | Sassi, TArrigoni, FBertini, LRizza, FRebuzzini, GVanoni, MBrambilla, L. G. |
Mostrati risultati da 1 a 4 di 4
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