Comparative Fluxome and Metabolome Analysis of Formate as an Auxiliary Substrate for Penicillin Production in Glucose-Limited Cultivation of Penicillium chrysogenum

Journal Article (2019)
Author(s)

Guan Wang (State Key Laboratory of Bioreactor Engineering Shanghai)

Xinxin Wang (State Key Laboratory of Bioreactor Engineering Shanghai)

Tong Wang (State Key Laboratory of Bioreactor Engineering Shanghai)

Walter M. Van Gulik (TU Delft - OLD BT/Cell Systems Engineering)

H.J. Noorman (TU Delft - BT/Bioprocess Engineering, DSM)

Yingping Zhuang (State Key Laboratory of Bioreactor Engineering Shanghai)

Ju Chu (State Key Laboratory of Bioreactor Engineering Shanghai)

Siliang Zhang (State Key Laboratory of Bioreactor Engineering Shanghai)

Research Group
OLD BT/Cell Systems Engineering
DOI related publication
https://doi.org/10.1002/biot.201900009
More Info
expand_more
Publication Year
2019
Language
English
Research Group
OLD BT/Cell Systems Engineering
Issue number
10
Volume number
14

Abstract

During glucose-limited growth, a substantial input of adenosine triphosphate (ATP) is required for the production of β-lactams by the filamentous fungus Penicillium chrysogenum. Formate dehydrogenase has been confirmed in P. chrysogenum for formate oxidation allowing an extra supply of ATP, and coassimilation of glucose and formate has the potential to increase penicillin production and biomass yield. In this study, the steady-state metabolite levels and fluxes in response to cofeeding of formate as an auxiliary substrate in glucose-limited chemostat cultures at the dilution rates (D) of both 0.03 h−1 and 0.05 h−1 are determined to evaluate the quantitative impact on the physiology of a high-yielding P. chrysogenum strain. It is observed that an equimolar addition of formate is conducive to an increase in both biomass yield and penicillin production at D = 0.03 h−1, while this is not the case at D = 0.05 h−1. In addition, a higher cytosolic redox status (NADH/NAD+), a higher intracellular glucose level, and lower penicillin productivity are only observed upon formate addition at D = 0.05 h−1, which are virtually absent at D = 0.03 h−1. In conclusion, the results demonstrate that the effect of formate as an auxiliary substrate on penicillin productivity in the glucose-limited chemostat cultivations of P. chrysogenum is not only dependent on the formate/glucose ratio as published before but also on the specific growth rate. The results also imply that the overall process productivity and quality regarding the use of formate should be further explored in an actual industrial-scale scenario.

No files available

Metadata only record. There are no files for this record.