Literature DB >> 22722698

Structure and functional features of olive pollen pectin methylesterase using homology modeling and molecular docking methods.

Jose C Jimenez-Lopez1, Simeon O Kotchoni, María I Rodríguez-García, Juan D Alché.   

Abstract

Pectin methylesterases (PMEs), a multigene family of proteins with multiple differentially regulated isoforms, are key enzymes implicated in the carbohydrates (pectin) metabolism of cell walls. Olive pollen PME has been identified as a new allergen (Ole e 11) of potential relevance in allergy amelioration, since it exhibits high prevalence among atopic patients. In this work, the structural and functional characterization of two olive pollen PME isoforms and their comparison with other PME plants was performed by using different approaches: (1) the physicochemical properties and functional-regulatory motifs characterization, (2) primary sequence analysis, 2D and 3D comparative structural features study, (3) conservation and evolutionary analysis, (4) catalytic activity and regulation based on molecular docking analysis of a homologue PME inhibitor, and (5) B-cell epitopes prediction by sequence and structural based methods and protein-protein interaction tools, while T-cell epitopes by inhibitory concentration and binding score methods. Our results indicate that the structural differences and low conservation of residues, together with differences in physicochemical and posttranslational motifs might be a mechanism for PME isovariants generation, regulation, and differential surface epitopes generation. Olive PMEs perform a processive catalytic mechanism, and a differential molecular interaction with specific PME inhibitor, opening new possibilities for PME activity regulation. Despite the common function of PMEs, differential features found in this study will lead to a better understanding of the structural and functional characterization of plant PMEs and help to improve the component-resolving diagnosis and immunotherapy of olive pollen allergy by epitopes identification.

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Year:  2012        PMID: 22722698     DOI: 10.1007/s00894-012-1492-2

Source DB:  PubMed          Journal:  J Mol Model        ISSN: 0948-5023            Impact factor:   1.810


  60 in total

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Journal:  Adv Carbohydr Chem Biochem       Date:  1976       Impact factor: 12.200

Review 2.  How pollen tubes grow.

Authors:  Alexander Krichevsky; Stanislav V Kozlovsky; Guo-Wei Tian; Min-Huei Chen; Adi Zaltsman; Vitaly Citovsky
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Review 3.  The germless theory of allergic disease: revisiting the hygiene hypothesis.

Authors:  M Wills-Karp; J Santeliz; C L Karp
Journal:  Nat Rev Immunol       Date:  2001-10       Impact factor: 53.106

Review 4.  Analysis of olive allergens.

Authors:  C Esteve; C Montealegre; M L Marina; M C García
Journal:  Talanta       Date:  2012-01-30       Impact factor: 6.057

5.  Structural basis for the interaction between pectin methylesterase and a specific inhibitor protein.

Authors:  Adele Di Matteo; Alfonso Giovane; Alessandro Raiola; Laura Camardella; Daniele Bonivento; Giulia De Lorenzo; Felice Cervone; Daniela Bellincampi; Demetrius Tsernoglou
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6.  Cross-reactive and species-specific immunoglobulin E epitopes of plant profilins: an experimental and structure-based analysis.

Authors:  C Radauer; M Willerroider; H Fuchs; K Hoffmann-Sommergruber; J Thalhamer; F Ferreira; O Scheiner; H Breiteneder
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9.  Determination of N-glycosylation site and glycan structures of pectin methylesterase in jelly fig (Ficus awkeotsang) Achenes.

Authors:  Eric S L Hsiao; Jeff C F Chen; Hsien-Yu Tsai; Kay-Hooi Khoo; Shui-Tein Chen; Jason T C Tzen
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10.  Pectinmethylesterase from the rice weevil, Sitophilus oryzae: cDNA isolation and sequencing, genetic origin, and expression of the recombinant enzyme.

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  11 in total

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Authors:  Miaolin Chen; Jie Xu; Deborah Devis; Jianxin Shi; Kang Ren; Iain Searle; Dabing Zhang
Journal:  Plant Physiol       Date:  2016-07-19       Impact factor: 8.340

2.  Structural functionality, catalytic mechanism modeling and molecular allergenicity of phenylcoumaran benzylic ether reductase, an olive pollen (Ole e 12) allergen.

Authors:  Jose C Jimenez-Lopez; Simeon O Kotchoni; Maria C Hernandez-Soriano; Emma W Gachomo; Juan D Alché
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3.  Genome mining of Fusarium reveals structural and functional diversity of pectin lyases: a bioinformatics approach.

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4.  Structure and Properties of a Non-processive, Salt-requiring, and Acidophilic Pectin Methylesterase from Aspergillus niger Provide Insights into the Key Determinants of Processivity Control.

Authors:  Lisa M Kent; Trevor S Loo; Laurence D Melton; Davide Mercadante; Martin A K Williams; Geoffrey B Jameson
Journal:  J Biol Chem       Date:  2015-11-14       Impact factor: 5.157

5.  The putative pectin methylesterase gene, BcMF23a, is required for microspore development and pollen tube growth in Brassica campestris.

Authors:  Xiaoyan Yue; Sue Lin; Youjian Yu; Li Huang; Jiashu Cao
Journal:  Plant Cell Rep       Date:  2018-04-11       Impact factor: 4.570

6.  Plant pectin acetylesterase structure and function: new insights from bioinformatic analysis.

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Journal:  BMC Genomics       Date:  2017-06-08       Impact factor: 3.969

7.  Narrow-Leafed Lupin Main Allergen β-Conglutin (Lup an 1) Detection and Quantification Assessment in Natural and Processed Foods.

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8.  Analysis of the effects of polymorphism on pollen profilin structural functionality and the generation of conformational, T- and B-cell epitopes.

Authors:  Jose C Jimenez-Lopez; María I Rodríguez-García; Juan D Alché
Journal:  PLoS One       Date:  2013-10-17       Impact factor: 3.240

9.  In Silico Prediction of T and B Cell Epitopes of Der f 25 in Dermatophagoides farinae.

Authors:  Xiaohong Li; Hai-Wei Yang; Hao Chen; Jing Wu; Yehai Liu; Ji-Fu Wei
Journal:  Int J Genomics       Date:  2014-05-08       Impact factor: 2.326

10.  Identification and Assessment of the Potential Allergenicity of 7S Vicilins in Olive (Olea europaea L.) Seeds.

Authors:  Jose C Jimenez-Lopez; Adoración Zafra; Lucía Palanco; José Fernando Florido; Juan de Dios Alché
Journal:  Biomed Res Int       Date:  2016-02-29       Impact factor: 3.411

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