Literature DB >> 27387305

Transcriptome-wide identification and characterization of CAD isoforms specific for podophyllotoxin biosynthesis from Podophyllum hexandrum.

Dipto Bhattacharyya1, Saptarshi Hazra2, Anindyajit Banerjee3, Riddhi Datta2, Deepak Kumar2, Saikat Chakrabarti3, Sharmila Chattopadhyay4.   

Abstract

Podophyllotoxin (ptox) is a therapeutically important lignan derived from Podophyllum hexandrum and is used as a precursor for the synthesis of anticancer drugs etoposide, teniposide and etopophose. In spite of its enormous economic significance, genomic information on this endangered medicinal herb is scarce. We have performed de novo transcriptome analysis of methyl jasmonate (MeJA)-treated P. hexandrum cell cultures exhibiting enhanced ptox accumulation. The results revealed the maximum up-regulation of several isoforms of cinnamyl alcohol dehydrogenase (CAD). CAD catalyzes the synthesis of coniferyl alcohol and sinapyl alcohol from coniferaldehyde (CAld) and sinapaldehyde respectively. Coniferyl alcohol can produce both lignin and lignan while sinapyl alcohol produces only lignin. To isolate the CAD isoforms favoring ptox, we deduced full length cDNA sequences of four CAD isoforms: PhCAD1, PhCAD2, PhCAD3 and PhCAD4 from the contigs of the transcriptome data. In vitro enzyme assays indicated a higher affinity for CAld over sinapaldehyde for each isoform. In silico molecular docking analyses also suggested that PhCAD3 has a higher binding preference with CAld over sinapaldehyde, followed by PhCAD4, PhCAD2, and PhCAD1, respectively. The transgenic cell cultures overexpressing these isoforms independently revealed that PhCAD3 favored the maximum accumulation of ptox as compared to lignin followed by PhCAD4 and PhCAD2, whereas, PhCAD1 favored both equally. Together, our study reveals transcriptome-wide identification and characterization of ptox specific CAD isoforms from P. hexandrum. It provides a useful resource for future research not only on the ptox biosynthetic pathway but on overall P. hexandrum, an endangered medicinal herb with immense therapeutic importance.

Entities:  

Keywords:  Cinnamyl alcohol dehydrogenase; Molecular docking; Podophyllotoxin; Podophyllum hexandrum; Transcriptome; Transgenic

Mesh:

Substances:

Year:  2016        PMID: 27387305     DOI: 10.1007/s11103-016-0492-5

Source DB:  PubMed          Journal:  Plant Mol Biol        ISSN: 0167-4412            Impact factor:   4.076


  61 in total

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6.  Molecular characterisation and expression of a wound-inducible cDNA encoding a novel cinnamyl-alcohol dehydrogenase enzyme in lucerne (Medicago sativa L.)

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7.  Formation of podophyllotoxins by Podophyllum peltatum tissue cultures.

Authors:  P G Kadkade
Journal:  Naturwissenschaften       Date:  1981-09

8.  Next generation sequencing in predicting gene function in podophyllotoxin biosynthesis.

Authors:  Joaquim V Marques; Kye-Won Kim; Choonseok Lee; Michael A Costa; Gregory D May; John A Crow; Laurence B Davin; Norman G Lewis
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2.  Transcriptome analyses reveal the expression profile of genes related to lignan biosynthesis in Anthriscus sylvestris L. Hoffm. Gen.

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3.  Methyl Jasmonate Regulates Podophyllotoxin Accumulation in Podophyllum hexandrum by Altering the ROS-Responsive Podophyllotoxin Pathway Gene Expression Additionally through the Down Regulation of Few Interfering miRNAs.

Authors:  Saptarshi Hazra; Dipto Bhattacharyya; Sharmila Chattopadhyay
Journal:  Front Plant Sci       Date:  2017-02-14       Impact factor: 5.753

  3 in total

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