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Multiple distinct O-Mannosylation pathways in eukaryotes
Ida Signe Bohse Larsen
,
Yoshiki Narimatsu
,
Henrik Clausen
,
Hiren J Joshi
,
Adnan Halim
Glycomics Program
9
Citations (Scopus)
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Dive into the research topics of 'Multiple distinct O-Mannosylation pathways in eukaryotes'. Together they form a unique fingerprint.
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Biochemistry, Genetics and Molecular Biology
Eukaryote
100%
Glycosylation
100%
POMT1
50%
POMT2
50%
Cadherin
33%
Plexin
33%
Animal
33%
Posttranslational Modification
33%
Genetics
33%
Macromolecule
16%
Evolution
16%
Enzyme
16%
Cell Adhesion
16%
Anabolism
16%
Mannosyltransferase
16%
Nematode
16%
Protist
16%
Glycoproteomics
16%
Immunology and Microbiology
Eukaryote
100%
Glycosylation
100%
Animal
33%
Cadherin
33%
Post-Translational Modification
33%
Protista
16%
Cell Line
16%
Nematode
16%
Cell Adhesion
16%
Macromolecule
16%
Evolution
16%
Keyphrases
PMT1
18%
Cadherin Signaling
9%
Neurodevelopmental Phenotypes
9%