Recent advances in paclitaxel biosynthesis and regulation

Author:

Coombe-Tennant Toby1ORCID,Zhu Xiaoping23,Wu Shihua234,Loake Gary J135

Affiliation:

1. Institute of Molecular Plant Sciences, School of Biological Sciences, University of Edinburgh , The King’s Buildings, Edinburgh EH9 3BF , UK

2. Research Center of Siyuan Natural Pharmacy and Biotoxicology, College of Life Sciences, Zhejiang University , Hangzhou, Zhejiang Province 310058 , China

3. Joint Research Centre for Engineering Biology, Zhejiang University–University of Edinburgh Institute, Zhejiang University , Haining 314400 , China

4. School of Ecology and Environment, Tibet University , Lhasa 850000 , China

5. Green Bioactives Ltd, Douglas House, Pentland Science Park, Bush Loan Rd , Penicuik EH26 0PL , UK

Abstract

Abstract Paclitaxel (PTX) is a high value plant natural product derived from Taxus (yew) species. This plant specialized metabolite (PSM) and its derivatives constitute a cornerstone for the treatment of an increasing variety of cancers. New applications for PTX also continue to emerge, further promoting demand for this WHO-designated essential medicine. Here we review recent advances in our understanding of PTX biosynthesis and its cognate regulation, which have been enabled by the development of transcriptomic approaches and the recent sequencing and annotation of three Taxus genomes. Collectively, this has resulted in the elucidation of two functional gene sets for PTX biosynthesis, unlocking new potential for the use of heterologous hosts to produce PTX. Knowledge of the PTX pathway also provides a valuable resource for understanding the regulation of this key PSM. Epigenetic regulation of PSM in plant cell culture is a major concern for PTX production, given the loss of PSM production in long-term cell cultures. Recent developments aim to design tools for manipulating epigenetic regulation, potentially providing a means to reverse the silencing of PSM caused by DNA methylation. Exciting times clearly lie ahead for our understanding of this key PSM and improving its production potential.

Funder

Fundemental Research Funds for the Central Universities

Key Research and Development Program of Tibet

Publisher

Oxford University Press (OUP)

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