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Transient production of artemisinin in Nicotiana benthamiana is boosted by a specific lipid transfer protein from A. annua.
Wang, Bo; Kashkooli, Arman Beyraghdar; Sallets, Adrienne; Ting, Hieng-Ming; de Ruijter, Norbert C A; Olofsson, Linda; Brodelius, Peter; Pottier, Mathieu; Boutry, Marc; Bouwmeester, Harro; van der Krol, Alexander R.
Affiliation
  • Wang B; Laboratory of Plant Physiology, Wageningen University, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands.
  • Kashkooli AB; Laboratory of Plant Physiology, Wageningen University, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands.
  • Sallets A; Institut des Sciences de la Vie, Université catholique de Louvain, Croix du Sud, 4-5, Box L7.07.14, 1348 Louvain-la-Neuve, Belgium.
  • Ting HM; Laboratory of Plant Physiology, Wageningen University, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands.
  • de Ruijter NCA; Laboratory of Cell Biology, Wageningen University, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands.
  • Olofsson L; Department of Chemistry and Biomedical Sciences, Linnaeus University, SE-38192 Kalmar, Sweden.
  • Brodelius P; Department of Chemistry and Biomedical Sciences, Linnaeus University, SE-38192 Kalmar, Sweden.
  • Pottier M; Institut des Sciences de la Vie, Université catholique de Louvain, Croix du Sud, 4-5, Box L7.07.14, 1348 Louvain-la-Neuve, Belgium.
  • Boutry M; Institut des Sciences de la Vie, Université catholique de Louvain, Croix du Sud, 4-5, Box L7.07.14, 1348 Louvain-la-Neuve, Belgium.
  • Bouwmeester H; Laboratory of Plant Physiology, Wageningen University, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands.
  • van der Krol AR; Laboratory of Plant Physiology, Wageningen University, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands.
Metab Eng ; 38: 159-169, 2016 11.
Article in En | MEDLINE | ID: mdl-27421621
Our lack of full understanding of transport and sequestration of the heterologous products currently limit metabolic engineering in plants for the production of high value terpenes. For instance, although all genes of the artemisinin/arteannuin B (AN/AB) biosynthesis pathway (AN-PW) from Artemisia annua have been identified, ectopic expression of these genes in Nicotiana benthamiana yielded mostly glycosylated pathway intermediates and only very little free (dihydro)artemisinic acid [(DH)AA]. Here we demonstrate that Lipid Transfer Protein 3 (AaLTP3) and the transporter Pleiotropic Drug Resistance 2 (AaPDR2) from A. annua enhance accumulation of (DH)AA in the apoplast of N. benthamiana leaves. Analysis of apoplast and cell content and apoplast exclusion assays show that AaLTP3 and AaPDR2 prevent reflux of (DH)AA from the apoplast back into the cells and enhances overall flux through the pathway. Moreover, AaLTP3 is stabilized in the presence of AN-PW activity and co-expression of AN-PW+AaLTP3+AaPDR2 genes yielded AN and AB in necrotic N. benthamiana leaves at 13 days post-agroinfiltration. This newly discovered function of LTPs opens up new possibilities for the engineering of biosynthesis pathways of high value terpenes in heterologous expression systems.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Plant Proteins / Nicotiana / Carrier Proteins / Artemisia annua / Artemisinins / Biosynthetic Pathways / Metabolic Engineering Language: En Journal: Metab Eng Journal subject: ENGENHARIA BIOMEDICA / METABOLISMO Year: 2016 Document type: Article Affiliation country: Netherlands Country of publication: Belgium

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Plant Proteins / Nicotiana / Carrier Proteins / Artemisia annua / Artemisinins / Biosynthetic Pathways / Metabolic Engineering Language: En Journal: Metab Eng Journal subject: ENGENHARIA BIOMEDICA / METABOLISMO Year: 2016 Document type: Article Affiliation country: Netherlands Country of publication: Belgium