Literature DB >> 31520716

Characterisation of three novel β-1,3 glucanases from the medically important house dust mite Dermatophagoides pteronyssinus (airmid).

Rose Waldron1, Jamie McGowan2, Natasha Gordon3, E Bruce Mitchell3, David A Fitzpatrick2, Sean Doyle4.   

Abstract

The European house dust mite, Dermatophagoides pteronyssinus is a major source of airborne allergens worldwide and is found in half of European homes. Interactions between microbes and house dust mites (HDM) are considered important factors that allow them to persist in the home. Laboratory studies indicate the European HDM, D. pteronyssinus is a mycophagous mite, capable of utilising a variety of fungi for nutrients, however specific mycolytic digestive enzymes are unknown. Our previous work identified a number of putative glycosyl hydrolases present in the predicted proteome of D. pteronyssinus airmid and validated the expression of 42 of these. Of note, three GH16 proteins with predicted β-1,3 glucanase activity were found to be consistently present in the mite body and excretome. Here, we performed an extensive bioinformatic, proteomic and biochemical study to characterize three-novel β-1,3 glucanases from this medically important house dust mite. The genes encoding novel β-1,3 glucanases designated Glu1, Glu2 and Glu3 were identified in D. pteronyssinus airmid, each exhibited more than 59% amino acid identity to one another. These enzymes are encoded by Glu genes present in a tri-gene cluster and protein homologs are found in other acari. The patchy phyletic distribution of Glu proteins means their evolutionary history remains elusive, however horizontal gene transfer cannot be completely excluded. Recombinant Glu1 and Glu2 exhibit hydrolytic activity toward laminarin, pachyman and barley glucan. Excreted β-1,3 glucanase activity was increased in response to D. pteronyssinus airmid feeding on baker's yeast. Active β-1,3 glucanases are expressed and excreted in the faeces of D. pteronyssinus airmid indicating they are digestive enzymes capable of breaking down β-1,3 glucans of fungi present in house dust.
Copyright © 2019 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  D. pteronyssinus; Enzyme; House dust mite; Phylogenetics; Quantitative proteomics; Yeast; β-1,3 glucanase

Year:  2019        PMID: 31520716     DOI: 10.1016/j.ibmb.2019.103242

Source DB:  PubMed          Journal:  Insect Biochem Mol Biol        ISSN: 0965-1748            Impact factor:   4.714


  3 in total

1.  Comparative Genomics Reveals Insights into the Divergent Evolution of Astigmatic Mites and Household Pest Adaptations.

Authors:  Qing Xiong; Angel Tsz-Yau Wan; Xiaoyu Liu; Cathy Sin-Hang Fung; Xiaojun Xiao; Nat Malainual; Jinpao Hou; Lingyi Wang; Mingqiang Wang; Kevin Yi Yang; Yubao Cui; Elaine Lai-Han Leung; Wenyan Nong; Soo-Kyung Shin; Shannon Wing-Ngor Au; Kyoung Yong Jeong; Fook-Tim Chew; Jerome Ho-Lam Hui; Ting-Fan Leung; Anchalee Tungtrongchitr; Nanshan Zhong; Zhigang Liu; Stephen Kwok-Wing Tsui
Journal:  Mol Biol Evol       Date:  2022-05-03       Impact factor: 8.800

2.  Characterization and Functional Importance of Two Glycoside Hydrolase Family 16 Genes from the Rice White Tip Nematode Aphelenchoides besseyi.

Authors:  Hui Feng; Dongmei Zhou; Paul Daly; Xiaoyu Wang; Lihui Wei
Journal:  Animals (Basel)       Date:  2021-02-02       Impact factor: 2.752

3.  Improved diagnosis of SARS-CoV-2 by using nucleoprotein and spike protein fragment 2 in quantitative dual ELISA tests.

Authors:  Carolina De Marco Verissimo; Carol O'Brien; Jesús López Corrales; Amber Dorey; Krystyna Cwiklinski; Richard Lalor; Jack M Doyle; Stephen Field; Claire Masterson; Eduardo Ribes Martinez; Gerry Hughes; Colm Bergin; Kieran Walshe; Bairbre McNicholas; John G Laffey; John P Dalton; Colm Kerr; Sean Doyle
Journal:  Epidemiol Infect       Date:  2021-06-08       Impact factor: 2.451

  3 in total

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