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Proteomics
(14)
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Andropogon gerardi
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Canis lupus familiaris
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pride
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2024
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bacteria
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Faculty of Chemistry, Biotechnology and Food Science Norwegian University of Life Sciences Post Office Box 5003 1432, Ås Norway
(3)
Laboratory of Enzymology and Molecular Biology (LEBIMO), Institute of Biology, University of Campinas (UNICAMP)
(2)
Department of Biotechnology and Biomedicine, Technical University of Denmark, Søltofts Plads, 2800 Kgs. Lyngby, Denmark
(1)
Department of Microbiology Guru Nanak Dev University Amritsar 143005 Punjab India
(1)
Division of Host-Microbe Systems & Therapeutics, Department of Pediatrics, UC San Diego School of Medicine, La Jolla, CA, USA.
(1)
Faculty of Chemistry, Biotechnology and Food Science Norwegian University of Life Sciences, 1432, Ås Norway
(1)
Faculty of Chemistry, Biotechnology and Food Science, NMBU - Norwegian University of Life Sciences, N-1433 Ås, Norway
(1)
Helmholtz Centre for Environmental Research GmbH - UFZ Department of Molecular Systems Biology Permoserstraße 15, 04318 Leipzig, Germany
(1)
Vice Director, Professor Novo Nordisk Foundation Center for Protein Research Proteomics Program University of Copenhagen Denmark
(1)
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2021
(4)
2018
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2024
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2020
(1)
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pathogen
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pathogen:bacterium
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Genomes containing LPMO gene
PRJNA1017125
|
ENA
Cite
Colorimetric LPMO assay with direct implication for cellulolytic activity.
Not available
S-EPMC7916272
|
biostudies-literature
Cite
Unraveling the roles of the reductant and free copper ions in LPMO kinetics.
Not available
S-EPMC7818938
|
biostudies-literature
Cite
A fast, sensitive and fluorescent LPMO activity assay.
Not available
S-EPMC10043361
|
biostudies-literature
Cite
Anions and citrate inhibit LsAA9A, a lytic polysaccharide monooxygenase (LPMO).
Not available
S-EPMC12366280
|
biostudies-literature
Cite
Oxidative Power: Tools for Assessing LPMO Activity on Cellulose.
Not available
S-EPMC8391687
|
biostudies-literature
Cite
Boosting LPMO-driven lignocellulose degradation by polyphenol oxidase-activated lignin building blocks.
Not available
S-EPMC5424327
|
biostudies-literature
Cite
Assessing the enzymatic effects of cellulases and LPMO in improving mechanical fibrillation of cotton linters.
Not available
S-EPMC6593493
|
biostudies-literature
Cite
Enhanced in situ H
2
O
2
production explains synergy between an LPMO with a cellulose-binding domain and a single-domain LPMO.
Not available
S-EPMC9005612
|
biostudies-literature
Cite
A modular enzyme with combined hemicellulose-removing and LPMO activity increases cellulose accessibility in softwood.
Not available
S-EPMC11705215
|
biostudies-literature
Cite
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