Synthetic biology for Taxol biosynthesis and sustainable production

Incomplete understanding of the biosynthetic pathway of the anticancer compound Taxol hinders its production by metabolic engineering. Recent reports by Jiang et al. and other groups now describe the missing steps in Taxol biosynthesis, notably including oxetane ring formation. These findings will p...

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Published inTrends in biotechnology (Regular ed.) Vol. 42; no. 6; pp. 674 - 676
Main Authors Xie, Linfeng, Gao, Jiaoqi, Zhou, Yongjin J.
Format Journal Article
LanguageEnglish
Published England Elsevier Ltd 01.06.2024
Elsevier Limited
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ISSN0167-7799
1879-3096
1879-3096
DOI10.1016/j.tibtech.2024.04.001

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Abstract Incomplete understanding of the biosynthetic pathway of the anticancer compound Taxol hinders its production by metabolic engineering. Recent reports by Jiang et al. and other groups now describe the missing steps in Taxol biosynthesis, notably including oxetane ring formation. These findings will promote the sustainable production of Taxol through synthetic biology. Incomplete understanding of the biosynthetic pathway of the anticancer compound Taxol hinders its production by metabolic engineering. Recent reports by Jiang et al. and other groups now describe the missing steps in Taxol biosynthesis, notably including oxetane ring formation. These findings will promote the sustainable production of Taxol through synthetic biology.
AbstractList Incomplete understanding of the biosynthetic pathway of the anticancer compound Taxol hinders its production by metabolic engineering. Recent reports by Jiang et al. and other groups now describe the missing steps in Taxol biosynthesis, notably including oxetane ring formation. These findings will promote the sustainable production of Taxol through synthetic biology.
AbstractIncomplete understanding of the biosynthetic pathway of the anticancer compound Taxol hinders its production by metabolic engineering. Recent reports by Jiang et al. and other groups now describe the missing steps in Taxol biosynthesis, notably including oxetane ring formation. These findings will promote the sustainable production of Taxol through synthetic biology.
Incomplete understanding of the biosynthetic pathway of the anticancer compound Taxol hinders its production by metabolic engineering. Recent reports by Jiang et al. and other groups now describe the missing steps in Taxol biosynthesis, notably including oxetane ring formation. These findings will promote the sustainable production of Taxol through synthetic biology. Incomplete understanding of the biosynthetic pathway of the anticancer compound Taxol hinders its production by metabolic engineering. Recent reports by Jiang et al. and other groups now describe the missing steps in Taxol biosynthesis, notably including oxetane ring formation. These findings will promote the sustainable production of Taxol through synthetic biology.
Incomplete understanding of the biosynthetic pathway of the anticancer compound Taxol hinders its production by metabolic engineering. Recent reports by Jiang et al. and other groups now describe the missing steps in Taxol biosynthesis, notably including oxetane ring formation. These findings will promote the sustainable production of Taxol through synthetic biology.Incomplete understanding of the biosynthetic pathway of the anticancer compound Taxol hinders its production by metabolic engineering. Recent reports by Jiang et al. and other groups now describe the missing steps in Taxol biosynthesis, notably including oxetane ring formation. These findings will promote the sustainable production of Taxol through synthetic biology.
Author Xie, Linfeng
Zhou, Yongjin J.
Gao, Jiaoqi
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Keywords paclitaxel
synthetic biology
Taxol
biosynthetic pathway
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Snippet Incomplete understanding of the biosynthetic pathway of the anticancer compound Taxol hinders its production by metabolic engineering. Recent reports by Jiang...
AbstractIncomplete understanding of the biosynthetic pathway of the anticancer compound Taxol hinders its production by metabolic engineering. Recent reports...
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SubjectTerms antineoplastic agents
biochemical pathways
Biology
Biosynthesis
biosynthetic pathway
Biosynthetic Pathways
biotechnology
Cancer
Chemical synthesis
Cytochrome
Enzymes
Fungi
Genes
Genetic engineering
Internal Medicine
Metabolic engineering
Metabolic Engineering - methods
Metabolism
Metabolites
Paclitaxel
Paclitaxel - biosynthesis
Paclitaxel - metabolism
Sustainable development
Sustainable production
Synthetic biology
Synthetic Biology - methods
Taxol
Yeast
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