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Metabolic pathway reconstruction of eugenol to vanillin bioconversion in Aspergillus niger

Identification of missing genes or proteins participating in the metabolic pathways as enzymes are of great interest. One such class of pathway is involved in the eugenol to vanillin bioconversion. Our goal is to develop an integral approach for identifying the topology of a reference or known pathw...

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Autores principales: Srivastava, Suchita, Luqman, Suaib, Khan, Feroz, Chanotiya, Chandan S, Darokar, Mahendra P
Formato: Texto
Lenguaje:English
Publicado: Biomedical Informatics Publishing Group 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2957766/
https://www.ncbi.nlm.nih.gov/pubmed/20978605
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author Srivastava, Suchita
Luqman, Suaib
Khan, Feroz
Chanotiya, Chandan S
Darokar, Mahendra P
author_facet Srivastava, Suchita
Luqman, Suaib
Khan, Feroz
Chanotiya, Chandan S
Darokar, Mahendra P
author_sort Srivastava, Suchita
collection PubMed
description Identification of missing genes or proteins participating in the metabolic pathways as enzymes are of great interest. One such class of pathway is involved in the eugenol to vanillin bioconversion. Our goal is to develop an integral approach for identifying the topology of a reference or known pathway in other organism. We successfully identify the missing enzymes and then reconstruct the vanillin biosynthetic pathway in Aspergillus niger. The procedure combines enzyme sequence similarity searched through BLAST homology search and orthologs detection through COG & KEGG databases. Conservation of protein domains and motifs was searched through CDD, PFAM & PROSITE databases. Predictions regarding how proteins act in pathway were validated experimentally and also compared with reported data. The bioconversion of vanillin was screened on UV-TLC plates and later confirmed through GC and GC-MS techniques. We applied a procedure for identifying missing enzymes on the basis of conserved functional motifs and later reconstruct the metabolic pathway in target organism. Using the vanillin biosynthetic pathway of Pseudomonas fluorescens as a case study, we indicate how this approach can be used to reconstruct the reference pathway in A. niger and later results were experimentally validated through chromatography and spectroscopy techniques.
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spelling pubmed-29577662010-10-26 Metabolic pathway reconstruction of eugenol to vanillin bioconversion in Aspergillus niger Srivastava, Suchita Luqman, Suaib Khan, Feroz Chanotiya, Chandan S Darokar, Mahendra P Bioinformation Hypothesis Identification of missing genes or proteins participating in the metabolic pathways as enzymes are of great interest. One such class of pathway is involved in the eugenol to vanillin bioconversion. Our goal is to develop an integral approach for identifying the topology of a reference or known pathway in other organism. We successfully identify the missing enzymes and then reconstruct the vanillin biosynthetic pathway in Aspergillus niger. The procedure combines enzyme sequence similarity searched through BLAST homology search and orthologs detection through COG & KEGG databases. Conservation of protein domains and motifs was searched through CDD, PFAM & PROSITE databases. Predictions regarding how proteins act in pathway were validated experimentally and also compared with reported data. The bioconversion of vanillin was screened on UV-TLC plates and later confirmed through GC and GC-MS techniques. We applied a procedure for identifying missing enzymes on the basis of conserved functional motifs and later reconstruct the metabolic pathway in target organism. Using the vanillin biosynthetic pathway of Pseudomonas fluorescens as a case study, we indicate how this approach can be used to reconstruct the reference pathway in A. niger and later results were experimentally validated through chromatography and spectroscopy techniques. Biomedical Informatics Publishing Group 2010-01-23 /pmc/articles/PMC2957766/ /pubmed/20978605 Text en © 2010 Biomedical Informatics Publishing Group This is an open-access article, which permits unrestricted use, distribution, and reproduction in any medium, for non-commercial purposes, provided the original author and source are credited.
spellingShingle Hypothesis
Srivastava, Suchita
Luqman, Suaib
Khan, Feroz
Chanotiya, Chandan S
Darokar, Mahendra P
Metabolic pathway reconstruction of eugenol to vanillin bioconversion in Aspergillus niger
title Metabolic pathway reconstruction of eugenol to vanillin bioconversion in Aspergillus niger
title_full Metabolic pathway reconstruction of eugenol to vanillin bioconversion in Aspergillus niger
title_fullStr Metabolic pathway reconstruction of eugenol to vanillin bioconversion in Aspergillus niger
title_full_unstemmed Metabolic pathway reconstruction of eugenol to vanillin bioconversion in Aspergillus niger
title_short Metabolic pathway reconstruction of eugenol to vanillin bioconversion in Aspergillus niger
title_sort metabolic pathway reconstruction of eugenol to vanillin bioconversion in aspergillus niger
topic Hypothesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2957766/
https://www.ncbi.nlm.nih.gov/pubmed/20978605
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