Engineered plant cell lines have the potential to achieve enhanced metabolite production rates, providing a high-yielding source of compounds of interest. Improving the production of taxanes, pharmacologically valuable secondary metabolites of Taxus spp., is hindered by an incomplete knowledge of the taxane biosynthetic pathway. Of the five unknown steps, three are thought to involve cytochrome P450-like hydroxylases. In the current work, after an in-depth in silico characterization of four candidate enzymes proposed in a previous cDNA-AFLP assay, TB506 was selected as a candidate for the hydroxylation of the taxane side chain. A docking assay indicated TB506 is active after the attachment of the side chain based on its affinity to the liga...
The emergency to obtain effective substances against cancer, and the awareness to protect natural re...
AbstractBackground: The structural complexity of taxol dictates continued reliance on biological pro...
Paclitaxel (Taxol) was first isolated from the bark of the pacific yew tree as an important anticanc...
Engineered plant cell lines have the potential to achieve enhanced metabolite production rates, prov...
Engineered plant cell lines have the potential to achieve enhanced metabolite production rates, prov...
Engineered plant cell lines have the potential to achieve enhanced metabolite production rates, prov...
Paclitaxel (Taxol) was first isolated from the bark of the pacific yew tree as an important anticanc...
Paclitaxel (Taxol), a complex diterpenoid, produced by yew tree (Taxus sp.) is the most important ch...
The diterpenoid paclitaxel (TaxolTM) is one of the most effective anticancer drugs, used against a w...
Plant secondary metabolism generates a wide range of molecules, some of them with valuable pharmacol...
Plant secondary metabolism generates a wide range of molecules, some of them with valuable pharmacol...
Plant secondary metabolism generates a wide range of molecules, some of them with valuable pharmacol...
Plant secondary metabolism generates a wide range of molecules, some of them with valuable pharmacol...
The diterpenoid paclitaxel (Taxol™) is one of the most effective anticancer drugs, used against a wi...
Author Manuscript February 6, 2011Taxol (paclitaxel) is a potent anticancer drug first isolated from...
The emergency to obtain effective substances against cancer, and the awareness to protect natural re...
AbstractBackground: The structural complexity of taxol dictates continued reliance on biological pro...
Paclitaxel (Taxol) was first isolated from the bark of the pacific yew tree as an important anticanc...
Engineered plant cell lines have the potential to achieve enhanced metabolite production rates, prov...
Engineered plant cell lines have the potential to achieve enhanced metabolite production rates, prov...
Engineered plant cell lines have the potential to achieve enhanced metabolite production rates, prov...
Paclitaxel (Taxol) was first isolated from the bark of the pacific yew tree as an important anticanc...
Paclitaxel (Taxol), a complex diterpenoid, produced by yew tree (Taxus sp.) is the most important ch...
The diterpenoid paclitaxel (TaxolTM) is one of the most effective anticancer drugs, used against a w...
Plant secondary metabolism generates a wide range of molecules, some of them with valuable pharmacol...
Plant secondary metabolism generates a wide range of molecules, some of them with valuable pharmacol...
Plant secondary metabolism generates a wide range of molecules, some of them with valuable pharmacol...
Plant secondary metabolism generates a wide range of molecules, some of them with valuable pharmacol...
The diterpenoid paclitaxel (Taxol™) is one of the most effective anticancer drugs, used against a wi...
Author Manuscript February 6, 2011Taxol (paclitaxel) is a potent anticancer drug first isolated from...
The emergency to obtain effective substances against cancer, and the awareness to protect natural re...
AbstractBackground: The structural complexity of taxol dictates continued reliance on biological pro...
Paclitaxel (Taxol) was first isolated from the bark of the pacific yew tree as an important anticanc...