High N-glycan multiplicity is critical for neuronal adhesion and sensitizes the developing cerebellum to N-glycosylation defect

Author:

Medina-Cano Daniel12,Ucuncu Ekin12,Nguyen Lam Son12,Nicouleau Michael12,Lipecka Joanna3,Bizot Jean-Charles4,Thiel Christian5,Foulquier François6,Lefort Nathalie7,Faivre-Sarrailh Catherine8,Colleaux Laurence12,Guerrera Ida Chiara3,Cantagrel Vincent12ORCID

Affiliation:

1. Paris Descartes-Sorbonne Paris Cité University, Paris, France

2. Developmental Brain Disorders Laboratory, Imagine Institute, INSERM UMR 1163, Paris, France

3. Proteomics platform 3P5-Necker, Université Paris Descartes - Structure Fédérative de Recherche Necker, INSERM US24/CNRS UMS3633, Paris, France

4. Key-Obs SAS, Orléans, France

5. Center for Child and Adolescent Medicine, Kinderheilkunde I, University of Heidelberg, Heidelberg, Germany

6. Université Lille, UMR 8576 – UGSF - Unité de Glycobiologie Structurale et Fonctionnelle, CNRS, Lille, France

7. iPS Core Facility, Imagine Institute, Paris, France

8. Aix Marseille Université, INSERM UMR1249, Marseille, France

Abstract

Proper brain development relies highly on protein N-glycosylation to sustain neuronal migration, axon guidance and synaptic physiology. Impairing the N-glycosylation pathway at early steps produces broad neurological symptoms identified in congenital disorders of glycosylation. However, little is known about the molecular mechanisms underlying these defects. We generated a cerebellum specific knockout mouse for Srd5a3, a gene involved in the initiation of N-glycosylation. In addition to motor coordination defects and abnormal granule cell development, Srd5a3 deletion causes mild N-glycosylation impairment without significantly altering ER homeostasis. Using proteomic approaches, we identified that Srd5a3 loss affects a subset of glycoproteins with high N-glycans multiplicity per protein and decreased protein abundance or N-glycosylation level. As IgSF-CAM adhesion proteins are critical for neuron adhesion and highly N-glycosylated, we observed impaired IgSF-CAM-mediated neurite outgrowth and axon guidance in Srd5a3 mutant cerebellum. Our results link high N-glycan multiplicity to fine-tuned neural cell adhesion during mammalian brain development.

Funder

Université Paris Descartes

European Commission

Fondation pour la Recherche Médicale

Agence Nationale de la Recherche

Association Connaître les Syndromes Cérébelleux

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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