AI Article Synopsis

  • Porphyrins and their derivatives have applications in various fields including medicine and energy, and this study focuses on improving their production using a bacterium.
  • By using genome-wide screening, researchers identified a gene target that enhances coproporphyrin III (CPIII) production, successfully increasing yields through fermentation.
  • The study resulted in efficient production of valuable compounds like heme and zincphyrin, achieving high conversion rates and purities that can benefit industrial and medical uses.

Article Abstract

Porphyrins and their derivatives find extensive applications in medicine, food, energy and materials. In this study, we produced porphyrin compounds by combining Rhodobacter sphaeroides as an efficient cell factory with enzymatic catalysis. Genome-wide CRISPRi-based screening in R. sphaeroides identifies hemN as a target for improved coproporphyrin III (CPIII) production, and exploiting phosphorylation of PrrA further improves the production of bioactive CPIII to 16.5 g L by fed-batch fermentation. Subsequent screening and engineering high-activity metal chelatases and coproheme decarboxylase results in the synthesis of various metalloporphyrins, including heme and the anti-tumor agent zincphyrin. After pilot-scale fermentation (200 L) and setting up the purification process for CPIII (purity >95%), we scaled up the production of heme and zincphyrin through enzymatic catalysis in a 5-L bioreactor, with CPIII achieving respective enzyme conversion rates of 63% and 98% and yielding 10.8 g L and 21.3 g L, respectively. Our strategy offers a solution for high-yield bioproduction of heme and other valuable porphyrins with substantial industrial and medical applications.

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Source
http://dx.doi.org/10.1038/s41587-024-02267-3DOI Listing

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