Brain-specific glycosylation of protein tyrosine phosphatase receptor type Z (PTPRZ) marks a demyelination-associated astrocyte subtype

Kazuto Takahashi, Kenji Kanekiyo, Kanoko Sakuda, Yui Muto, Masahiro Iguchi, Nozomu Matsuda, Yuko Hashimoto, Kazuaki Kanai, Haruko Ogawa, Hajime Hirase, Akiyoshi Kakita, Norihisa Bizen, Hirohide Takebayashi, Yasushi Kawaguchi, Miwa Uzuki, Shinobu Kitazume*

*Corresponding author af dette arbejde

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Abstract

Astrocytes are the most abundant glial cell type in the brain, where they participate in various homeostatic functions. Transcriptomically, diverse astrocyte subpopulations play distinct roles during development and disease progression. However, the biochemical identification of astrocyte subtypes, especially by membrane surface protein glycosylation, remains poorly investigated. Protein tyrosine phosphatase receptor type zeta (PTPRZ) is a highly expressed membrane protein in CNS glia cells that can be modified with diverse glycosylation, including the unique HNK-1 capped O-mannosyl (O-Man) core M2 glycan mediated by brain-specific branching enzyme GnT-IX. Although PTPRZ modified with HNK-1 capped O-Man glycans (HNK-1-O-Man+ PTPRZ) is increased in reactive astrocytes of demyelination model mice, whether such astrocytes emerge in a broad range of disease-associated conditions or are limited to conditions associated with demyelination remains unclear. Here, we show that HNK-1-O-Man+ PTPRZ localizes in hypertrophic astrocytes of damaged brain areas in patients with multiple sclerosis. Furthermore, we show that astrocytes expressing HNK-1-O-Man+ PTPRZ are present in two demyelination mouse models (cuprizone-fed mice and a vanishing white matter disease model), while traumatic brain injury does not induce glycosylation. Administration of cuprizone to Aldh1l1-eGFP and Olig2KICreER/+;Rosa26eGFP mice revealed that cells expressing HNK-1-O-Man+ PTPRZ are derived from cells in the astrocyte lineage. Notably, GnT-IX but not PTPRZ mRNA was up-regulated in astrocytes isolated from the corpus callosum of cuprizone model mice. These results suggest that the unique PTPRZ glycosylation plays a key role in the patterning of demyelination-associated astrocytes
OriginalsprogEngelsk
TidsskriftJournal of Neurochemistry
Vol/bind166
Udgave nummer3
Antal sider13
ISSN0022-3042
DOI
StatusUdgivet - 2023

Bibliografisk note

Funding Information:
This work was supported by Glial Assembly (grant no. 26117522 to S.K.), KAKENHI (grant no. 16K08601 to S.K.), AMED (grant no. JP18am0101036 to S.K.), RIKEN Junior Research Associate Program (to K.S), the Collaborative Research Project of the Brain Research Institute, Niigata University, and the Grant for Joint Research Project of the Institute of Medical Science, The University of Tokyo. All experiments were conducted in compliance with the ARRIVE guidelines.

Publisher Copyright:
© 2023 International Society for Neurochemistry.

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