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A biotechnological approach for the production of new protein bioplastics

Biotechnol J. 2023-10; 
Francesca De Marchis, Tania Vanzolini, Elisa Maricchiolo, Michele Bellucci, Michele Menotta, Tomas Di Mambro, Annalisa Aluigi, Andrea Zattoni, Barbara Roda, Valentina Marassi, Rita Crinelli, Andrea Pompa
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Molecular Biology Reagents … ΔPHSL and ΔPHSL* coding sequences were cloned between PmlI and HindIII sites of the pET-45b(+) vector by GenScript®. This vector allows expression of the proteins with a 6His tag … Get A Quote

摘要

The future of biomaterial production will leverage biotechnology based on the domestication of cells as biological factories. Plants, algae, and bacteria can produce low-environmental impact biopolymers. Here, two strategies were developed to produce a biopolymer derived from a bioengineered vacuolar storage protein of the common bean (phaseolin; PHSL). The cys-added PHSL* forms linear-structured biopolymers when expressed in the thylakoids of transplastomic tobacco leaves by exploiting the formation of inter-chain disulfide bridges. The same protein without signal peptide (ΔPHSL*) accumulates in Escherichia coli inclusion bodies as high-molar-mass species polymers that can subsequently be oxidized to form dis... More

关键词

E. coli, biopolymer, disulfide bridges, phaseolin, transplastomic plants