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Sugianto, Widianti; Altin-Yavuzarslan, Gokce; Tickman, Benjamin I.; Kiattisewee, Cholpisit; Yuan, Shuo-Fu; Brooks, Sierra M.; Wong, Jitkanya; Alper, Hal S.; Nelson, Alshakim; Carothers, James M. (, Materials Today Bio)
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Brooks, Sierra M.; Marsan, Celeste; Reed, Kevin B.; Yuan, Shuo-Fu; Nguyen, Dustin-Dat; Trivedi, Adit; Altin-Yavuzarslan, Gokce; Ballinger, Nathan; Nelson, Alshakim; Alper, Hal S. (, Nature Communications)Abstract Plant-derived phenylpropanoids, in particular phenylpropenes, have diverse industrial applications ranging from flavors and fragrances to polymers and pharmaceuticals. Heterologous biosynthesis of these products has the potential to address low, seasonally dependent yields hindering ease of widespread manufacturing. However, previous efforts have been hindered by the inherent pathway promiscuity and the microbial toxicity of key pathway intermediates. Here, in this study, we establish the propensity of a tripartite microbial co-culture to overcome these limitations and demonstrate to our knowledge the first reported de novo phenylpropene production from simple sugar starting materials. After initially designing the system to accumulate eugenol, the platform modularity and downstream enzyme promiscuity was leveraged to quickly create avenues for hydroxychavicol and chavicol production. The consortia was found to be compatible with Engineered Living Material production platforms that allow for reusable, cold-chain-independent distributed manufacturing. This work lays the foundation for further deployment of modular microbial approaches to produce plant secondary metabolites.more » « less
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Brooks, Sierra M.; Alper, Hal S. (, Nature Communications)Abstract Synthetic biology holds great promise for addressing global needs. However, most current developments are not immediately translatable to ‘outside-the-lab’ scenarios that differ from controlled laboratory settings. Challenges include enabling long-term storage stability as well as operating in resource-limited and off-the-grid scenarios using autonomous function. Here we analyze recent advances in developing synthetic biological platforms for outside-the-lab scenarios with a focus on three major application spaces: bioproduction, biosensing, and closed-loop therapeutic and probiotic delivery. Across the Perspective, we highlight recent advances, areas for further development, possibilities for future applications, and the needs for innovation at the interface of other disciplines.more » « less
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