Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Characterization of two 1,3-β-glucan-modifying enzymes from Penicillium sumatraense reveals new insights into 1,3-β-glucan metabolism of fungal saprotrophs
by
Troilo, Francesca
, Ponziani, Sara
, Scafati, Valentina
, Angelucci, Francesco
, Di Matteo, Adele
, Pontiggia, Daniela
, Giovannoni, Moira
, Scortica, Anna
, Mattei, Benedetta
, Benedetti, Manuel
in
1,3-β-Glucan metabolism
/ 1,3-β-Transglucanase
/ active sites
/ Algae
/ autohydrolysis
/ Autolysis
/ biofuels
/ Biomass
/ Biotechnology
/ Cell wall-modifying enzymes
/ Cell walls
/ Chemistry
/ Chemistry and Materials Science
/ Chromatography
/ Crystal structure
/ Crystallography
/ Degree of polymerization
/ Environmental Engineering/Biotechnology
/ Enzymes
/ Exo-1,3-β-glucanase
/ Fungi
/ Glucan
/ glucans
/ glucose
/ Glucosidase
/ Glycosidases
/ Komagataella pastoris
/ Laminarin
/ Metabolism
/ microalgae
/ Microbiology
/ Molecular modelling
/ Oligomers
/ Organisms
/ Penicillium
/ Phylogeny
/ Plant Breeding/Biotechnology
/ polymerization
/ Polysaccharides
/ Proteins
/ Renewable and Green Energy
/ saprotrophs
/ Spectrum analysis
/ Substrates
/ TIM-barrel
/ X-ray diffraction
/ β-1,3-Glucan
/ β-Glucan
/ β-Glucosidase
2022
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Characterization of two 1,3-β-glucan-modifying enzymes from Penicillium sumatraense reveals new insights into 1,3-β-glucan metabolism of fungal saprotrophs
by
Troilo, Francesca
, Ponziani, Sara
, Scafati, Valentina
, Angelucci, Francesco
, Di Matteo, Adele
, Pontiggia, Daniela
, Giovannoni, Moira
, Scortica, Anna
, Mattei, Benedetta
, Benedetti, Manuel
in
1,3-β-Glucan metabolism
/ 1,3-β-Transglucanase
/ active sites
/ Algae
/ autohydrolysis
/ Autolysis
/ biofuels
/ Biomass
/ Biotechnology
/ Cell wall-modifying enzymes
/ Cell walls
/ Chemistry
/ Chemistry and Materials Science
/ Chromatography
/ Crystal structure
/ Crystallography
/ Degree of polymerization
/ Environmental Engineering/Biotechnology
/ Enzymes
/ Exo-1,3-β-glucanase
/ Fungi
/ Glucan
/ glucans
/ glucose
/ Glucosidase
/ Glycosidases
/ Komagataella pastoris
/ Laminarin
/ Metabolism
/ microalgae
/ Microbiology
/ Molecular modelling
/ Oligomers
/ Organisms
/ Penicillium
/ Phylogeny
/ Plant Breeding/Biotechnology
/ polymerization
/ Polysaccharides
/ Proteins
/ Renewable and Green Energy
/ saprotrophs
/ Spectrum analysis
/ Substrates
/ TIM-barrel
/ X-ray diffraction
/ β-1,3-Glucan
/ β-Glucan
/ β-Glucosidase
2022
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Characterization of two 1,3-β-glucan-modifying enzymes from Penicillium sumatraense reveals new insights into 1,3-β-glucan metabolism of fungal saprotrophs
by
Troilo, Francesca
, Ponziani, Sara
, Scafati, Valentina
, Angelucci, Francesco
, Di Matteo, Adele
, Pontiggia, Daniela
, Giovannoni, Moira
, Scortica, Anna
, Mattei, Benedetta
, Benedetti, Manuel
in
1,3-β-Glucan metabolism
/ 1,3-β-Transglucanase
/ active sites
/ Algae
/ autohydrolysis
/ Autolysis
/ biofuels
/ Biomass
/ Biotechnology
/ Cell wall-modifying enzymes
/ Cell walls
/ Chemistry
/ Chemistry and Materials Science
/ Chromatography
/ Crystal structure
/ Crystallography
/ Degree of polymerization
/ Environmental Engineering/Biotechnology
/ Enzymes
/ Exo-1,3-β-glucanase
/ Fungi
/ Glucan
/ glucans
/ glucose
/ Glucosidase
/ Glycosidases
/ Komagataella pastoris
/ Laminarin
/ Metabolism
/ microalgae
/ Microbiology
/ Molecular modelling
/ Oligomers
/ Organisms
/ Penicillium
/ Phylogeny
/ Plant Breeding/Biotechnology
/ polymerization
/ Polysaccharides
/ Proteins
/ Renewable and Green Energy
/ saprotrophs
/ Spectrum analysis
/ Substrates
/ TIM-barrel
/ X-ray diffraction
/ β-1,3-Glucan
/ β-Glucan
/ β-Glucosidase
2022
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Characterization of two 1,3-β-glucan-modifying enzymes from Penicillium sumatraense reveals new insights into 1,3-β-glucan metabolism of fungal saprotrophs
Journal Article
Characterization of two 1,3-β-glucan-modifying enzymes from Penicillium sumatraense reveals new insights into 1,3-β-glucan metabolism of fungal saprotrophs
2022
Request Book From Autostore
and Choose the Collection Method
Overview
Background
1,3-β-glucan is a polysaccharide widely distributed in the cell wall of several phylogenetically distant organisms, such as bacteria, fungi, plants and microalgae. The presence of highly active 1,3-β-glucanases in fungi evokes the biological question on how these organisms can efficiently metabolize exogenous sources of 1,3-β-glucan without incurring in autolysis.
Results
To elucidate the molecular mechanisms at the basis of 1,3-β-glucan metabolism in fungal saprotrophs, the putative exo-1,3-β-glucanase G9376 and a truncated form of the putative glucan endo-1,3-β-glucosidase (ΔG7048) from
Penicillium sumatraense
AQ67100 were heterologously expressed in
Pichia pastoris
and characterized both in terms of activity and structure. G9376 efficiently converted laminarin and 1,3-β-glucan oligomers into glucose by acting as an exo-glycosidase, whereas G7048 displayed a 1,3-β-transglucanase/branching activity toward 1,3-β-glucan oligomers with a degree of polymerization higher than 5, making these oligomers more recalcitrant to the hydrolysis acted by exo-1,3-β-glucanase G9376. The X-ray crystallographic structure of the catalytic domain of G7048, solved at 1.9 Å of resolution, consists of a (β/α)
8
TIM-barrel fold characteristic of all the GH17 family members. The catalytic site is in a V-shaped cleft containing the two conserved catalytic glutamic residues. Molecular features compatible with the activity of G7048 as 1,3-β-transglucanase are discussed.
Conclusions
The antagonizing activity between ΔG7048 and G9376 indicates how opportunistic fungi belonging to
Penicillium
genus can feed on substrates similar for composition and structure to their own cell wall without incurring in a self-deleterious autohydrolysis.
Publisher
BioMed Central,Nature Publishing Group,BMC
Subject
This website uses cookies to ensure you get the best experience on our website.