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Eliminating the capsule-like layer to promote glucose uptake for hyaluronan production by engineered Corynebacterium glutamicum

Author

Listed:
  • Yang Wang

    (Jiangnan University
    Jiangnan University)

  • Litao Hu

    (Jiangnan University
    Jiangnan University)

  • Hao Huang

    (Jiangnan University)

  • Hao Wang

    (Jiangnan University)

  • Tianmeng Zhang

    (Bloomage Biotechnology CO, LTD)

  • Jian Chen

    (Jiangnan University
    Jiangnan University)

  • Guocheng Du

    (Jiangnan University
    Jiangnan University)

  • Zhen Kang

    (Jiangnan University
    Jiangnan University)

Abstract

Hyaluronan is widely used in cosmetics and pharmaceutics. Development of robust and safe cell factories and cultivation approaches to efficiently produce hyaluronan is of many interests. Here, we describe the metabolic engineering of Corynebacterium glutamicum and application of a fermentation strategy to manufacture hyaluronan with different molecular weights. C. glutamicum is engineered by combinatorial overexpression of type I hyaluronan synthase, enzymes of intermediate metabolic pathways and attenuation of extracellular polysaccharide biosynthesis. The engineered strain produces 34.2 g L−1 hyaluronan in fed-batch cultures. We find secreted hyaluronan encapsulates C. glutamicum, changes its cell morphology and inhibits metabolism. Disruption of the encapsulation with leech hyaluronidase restores metabolism and leads to hyper hyaluronan productions of 74.1 g L−1. Meanwhile, the molecular weight of hyaluronan is also highly tunable. These results demonstrate combinatorial optimization of cell factories and the extracellular environment is efficacious and likely applicable for the production of other biopolymers.

Suggested Citation

  • Yang Wang & Litao Hu & Hao Huang & Hao Wang & Tianmeng Zhang & Jian Chen & Guocheng Du & Zhen Kang, 2020. "Eliminating the capsule-like layer to promote glucose uptake for hyaluronan production by engineered Corynebacterium glutamicum," Nature Communications, Nature, vol. 11(1), pages 1-10, December.
  • Handle: RePEc:nat:natcom:v:11:y:2020:i:1:d:10.1038_s41467-020-16962-7
    DOI: 10.1038/s41467-020-16962-7
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