2023
DOI: 10.1016/j.biotechadv.2023.108148
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Endo-1,4-β-xylanase-containing glycoside hydrolase families: characteristics, singularities and similarities

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Cited by 21 publications
(8 citation statements)
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“…Thus, the evaluation of XOS production potential for BvelXyn11 can be included in this study. The molecular weight of rSrocXyn10-Ec and rBvelXyn11-Ec on SDS-PAGE (55 kDa for rSrocXyn10-Ec and 27 kDa for rBvelXyn11-Ec) are consistent with the general characteristics that xylanases belonging to GH10 family show a relative high molecular weight (≥ 30 kDa), and xylanases belonging to the GH11 family share a relative low molecular weight (< 30 kDa) ( Gavaseraei et al, 2021 ; Mendonca et al, 2023 ). For example, xylanase (from B. cereus L −1 ) ( Zhang et al, 2023 ), Xylanase II (from Aspergillus sydowii ) ( Brandt et al, 2020 ) and Xyl11 (from Trichoderma asperellum ND-1) ( Zheng et al, 2022 ) belonging to GH11 showed molecular weights of 23 kDa, 23.52 kDa and 22.47 kDa, respectively; and xylanase from Penicillium menonorum SP10 ( Luong et al, 2023 ), AS1 (from B. altitudinis ) ( Chauhan et al, 2023 ) and SipoEnXyn10A (from S. ipomoeae ) ( Xian et al, 2019 ) belonging to GH10 showed molecular weights of 54 kDa, 43 kDa and 44 kDa, respectively.…”
Section: Discussionsupporting
confidence: 78%
“…Thus, the evaluation of XOS production potential for BvelXyn11 can be included in this study. The molecular weight of rSrocXyn10-Ec and rBvelXyn11-Ec on SDS-PAGE (55 kDa for rSrocXyn10-Ec and 27 kDa for rBvelXyn11-Ec) are consistent with the general characteristics that xylanases belonging to GH10 family show a relative high molecular weight (≥ 30 kDa), and xylanases belonging to the GH11 family share a relative low molecular weight (< 30 kDa) ( Gavaseraei et al, 2021 ; Mendonca et al, 2023 ). For example, xylanase (from B. cereus L −1 ) ( Zhang et al, 2023 ), Xylanase II (from Aspergillus sydowii ) ( Brandt et al, 2020 ) and Xyl11 (from Trichoderma asperellum ND-1) ( Zheng et al, 2022 ) belonging to GH11 showed molecular weights of 23 kDa, 23.52 kDa and 22.47 kDa, respectively; and xylanase from Penicillium menonorum SP10 ( Luong et al, 2023 ), AS1 (from B. altitudinis ) ( Chauhan et al, 2023 ) and SipoEnXyn10A (from S. ipomoeae ) ( Xian et al, 2019 ) belonging to GH10 showed molecular weights of 54 kDa, 43 kDa and 44 kDa, respectively.…”
Section: Discussionsupporting
confidence: 78%
“…The results show that the MD simulations retain the overall fold and topology of the AlphaFold prediction, and that is maintained at 298 K along the time. The structures reveal the presence of two amino acid residues—Glu133 and Glu238—in close proximity and in opposing directions that could act as catalytic residues, as in other xylanases (Mendonça et al 2023 ).
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Section: Resultsmentioning
confidence: 99%
“…Computational methods were applied to predict the Xyl4 structure and the interaction with the substrate, xylohexaose. The xylanases of GH10 family hydrolyze glycosidic bonds by acid-base catalysis through a double displacement mechanism involving two glutamate residues (Mendonça et al 2023 ), positioned at the bottom of the active site cleft. This is consistent with the position observed for Glu133 and Glu238 in the arranged model.…”
Section: Discussionmentioning
confidence: 99%
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“…The effect on growth was possibly connected to CAZymes activities. The GHs families contain hydrolases such as endo-and exo-1,4-beta-glucanase ( Mendonça et al, 2023 ), which play an important role in the ductility of cell wall and affect plant growth and development. We found that although the gene expression of GHs in CAZymes was up-regulated under pH stress, the endo-and exo-1,4-beta-glucanase and β-glucosidase activities were highest at pH 7.…”
Section: Discussionmentioning
confidence: 99%