Optimising the biosynthesis of oxygenated and acetylated Taxol precursors in Saccharomyces cerevisiae using advanced bioprocessing strategies — Laura E. Walls (2020) | RDL Network
Optimising the biosynthesis of oxygenated and acetylated Taxol precursors in Saccharomyces cerevisiae using advanced bioprocessing strategies
Preprint 2020 en
Authors
LW
Laura E. Walls
KM
Koray Malcı
BN
Behnaz Nowrouzi
Abstract
1 min read
Taxadien-5α-hydroxylase and taxadien-5α-ol O-acetyltransferase catalyse the oxidation of taxadiene to taxadien-5α-ol and subsequent acetylation to taxadien-5α-yl-acetate in the biosynthesis of the blockbuster anti-cancer drug, paclitaxel (Taxol). Despite decades of research, the promiscuous and multispecific CYP725A4 enzyme remains a major bottleneck in microbial biosynthetic pathway development. In this study, an interdisciplinary approach was applied for the construction and optimisation of the early pathway in Saccharomyces cerevisiae, across a range of bioreactor scales. High-throughput microscale optimisation enhanced total oxygenated taxane titre to 39.0±5.7 mg/L and total taxane product titres were comparable at micro and mini-bioreactor scale at 95.4±18.0 and 98.9 mg/L, respectively. The introduction of pH control successfully mitigated a reduction of oxygenated taxane production, enhancing the potential taxadien-5α-ol isomer titre to 19.2 mg/L, comparable to the 23.8±3.7 mg/L achieved at microscale. A combination of bioprocess optimisation and increased GC-MS resolution at 1L bioreactor scale facilitated taxadien-5α-yl-acetate detection with a final titre of 3.7 mg/L. Total oxygenated taxane titres were improved 2.7-fold at this scale to 78 mg/L, the highest reported titre in yeast. Critical parameters affecting the productivity of the engineered strain were identified across a range of scales, providing a foundation for the development of robust integrated bioprocess control systems.
Laura E. Walls, Koray Malcı, Behnaz Nowrouzi, Rachel A. Li, Leo d’Espaux, Jeff Wong, Jonathan A. Dennis, Andrea J.C. Semião, Stephen Wallace, José L. Martínez, Jay D Keasling, Leonardo Rios‐Solis
Behnaz Nowrouzi, Rachel Li, Laura E. Walls, Leopold d’Espaux, Koray Malcı, Liang Lungang, Nestor Jonguitud Borrego, Albert I. Lerma Escalera, José Rubén Morones‐Ramírez, Jay D Keasling, Leonardo Rios‐Solis
Behnaz Nowrouzi, Rachel A. Li, Laura E. Walls, Leo d’Espaux, Koray Malcı, Liang Lungang, Nestor Jonguitud‐Borrego, Albert Isaac Lerma-Escalera, José Rubén Morones‐Ramírez, Jay D Keasling, Leonardo Rios‐Solis
H. B. Singh, Y. Chen, A. Tabazadeh, Yoshiko Fukui, I. Bey, Robert M. Yantosca, Daniel James Jacob, Frances H. Arnold, K.‐H. Wohlfrom, E. Atlas, F. Flocke, Donald R Blake, N. J. Blake, B. Heikes, J. Snow, R. W. Talbot, G. L. Gregory, G. W. Sachse, S. Vay, Yasuyuki Kondo
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