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In silico analysis of the polygalacturonase inhibiting protein 1 from apple, Malus domestica

BACKGROUND: The Malus domestica polygalacturonase inhibiting protein 1 (MdPGIP1) gene, encoding the M. domestica polygalacturonase inhibiting protein 1 (MdPGIP1), was isolated from the Granny Smith apple cultivar (GenBank accession no. DQ185063). The gene was used to transform tobacco and potato for...

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Autores principales: Matsaunyane, Lerato BT, Oelofse, Dean, Dubery, Ian A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4367963/
https://www.ncbi.nlm.nih.gov/pubmed/25889420
http://dx.doi.org/10.1186/s13104-015-1025-z
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author Matsaunyane, Lerato BT
Oelofse, Dean
Dubery, Ian A
author_facet Matsaunyane, Lerato BT
Oelofse, Dean
Dubery, Ian A
author_sort Matsaunyane, Lerato BT
collection PubMed
description BACKGROUND: The Malus domestica polygalacturonase inhibiting protein 1 (MdPGIP1) gene, encoding the M. domestica polygalacturonase inhibiting protein 1 (MdPGIP1), was isolated from the Granny Smith apple cultivar (GenBank accession no. DQ185063). The gene was used to transform tobacco and potato for enhanced resistance against fungal diseases. FINDINGS: Analysis of the MdPGIP1 nucleotide sequence revealed that the gene comprises 993 nucleotides that encode a 330 amino acid polypeptide. In silico characterization of the MdPGIP1 polypeptide revealed domains typical of PGIP proteins, which include a 24 amino acid putative signal peptide, a potential cleavage site [Alanine-Leucine-Serine (ALS)] for the signal peptide, a 238 amino acid leucine-rich repeat (LRR) domain, a 46 amino acid N-terminal domain and a 22 amino acid C-terminal domain. The hydropathic evaluation of MdPGIP1 indicated a repetitive hydrophobic motif in the LRR domain and a hydrophilic surface area consistent with a globular protein. The typical consensus glycosylation sequence of Asn-X-Ser/Thr was identified in MdPGIP1, indicating potential N-linked glycosylation of MdPGIP1. The molecular mass of non-glycosylated MdPGIP1 was calculated as 36.615 kDa and the theoretical isoelectric point as 6.98. Furthermore, the secondary and tertiary structure of MdPGIP1 was modelled, and revealed that MdPGIP1 is a curved and elongated molecule that contains sheet B1, sheet B2 and 3(10)-helices on its LRR domain. CONCLUSION: The overall properties of the MdPGIP1 protein is similar to that of the prototypical Phaseolus vulgaris PGIP 2 (PvPGIP2), and the detected differences supported its use in biotechnological applications as an inhibitor of targeted fungal polygalacturonases (PGs).
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spelling pubmed-43679632015-03-21 In silico analysis of the polygalacturonase inhibiting protein 1 from apple, Malus domestica Matsaunyane, Lerato BT Oelofse, Dean Dubery, Ian A BMC Res Notes Short Report BACKGROUND: The Malus domestica polygalacturonase inhibiting protein 1 (MdPGIP1) gene, encoding the M. domestica polygalacturonase inhibiting protein 1 (MdPGIP1), was isolated from the Granny Smith apple cultivar (GenBank accession no. DQ185063). The gene was used to transform tobacco and potato for enhanced resistance against fungal diseases. FINDINGS: Analysis of the MdPGIP1 nucleotide sequence revealed that the gene comprises 993 nucleotides that encode a 330 amino acid polypeptide. In silico characterization of the MdPGIP1 polypeptide revealed domains typical of PGIP proteins, which include a 24 amino acid putative signal peptide, a potential cleavage site [Alanine-Leucine-Serine (ALS)] for the signal peptide, a 238 amino acid leucine-rich repeat (LRR) domain, a 46 amino acid N-terminal domain and a 22 amino acid C-terminal domain. The hydropathic evaluation of MdPGIP1 indicated a repetitive hydrophobic motif in the LRR domain and a hydrophilic surface area consistent with a globular protein. The typical consensus glycosylation sequence of Asn-X-Ser/Thr was identified in MdPGIP1, indicating potential N-linked glycosylation of MdPGIP1. The molecular mass of non-glycosylated MdPGIP1 was calculated as 36.615 kDa and the theoretical isoelectric point as 6.98. Furthermore, the secondary and tertiary structure of MdPGIP1 was modelled, and revealed that MdPGIP1 is a curved and elongated molecule that contains sheet B1, sheet B2 and 3(10)-helices on its LRR domain. CONCLUSION: The overall properties of the MdPGIP1 protein is similar to that of the prototypical Phaseolus vulgaris PGIP 2 (PvPGIP2), and the detected differences supported its use in biotechnological applications as an inhibitor of targeted fungal polygalacturonases (PGs). BioMed Central 2015-03-11 /pmc/articles/PMC4367963/ /pubmed/25889420 http://dx.doi.org/10.1186/s13104-015-1025-z Text en © Matsaunyane et al.; licensee BioMed Central. 2015 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Short Report
Matsaunyane, Lerato BT
Oelofse, Dean
Dubery, Ian A
In silico analysis of the polygalacturonase inhibiting protein 1 from apple, Malus domestica
title In silico analysis of the polygalacturonase inhibiting protein 1 from apple, Malus domestica
title_full In silico analysis of the polygalacturonase inhibiting protein 1 from apple, Malus domestica
title_fullStr In silico analysis of the polygalacturonase inhibiting protein 1 from apple, Malus domestica
title_full_unstemmed In silico analysis of the polygalacturonase inhibiting protein 1 from apple, Malus domestica
title_short In silico analysis of the polygalacturonase inhibiting protein 1 from apple, Malus domestica
title_sort in silico analysis of the polygalacturonase inhibiting protein 1 from apple, malus domestica
topic Short Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4367963/
https://www.ncbi.nlm.nih.gov/pubmed/25889420
http://dx.doi.org/10.1186/s13104-015-1025-z
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