Altered human oligodendrocyte heterogeneity in multiple sclerosis

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Updated February 10, 2021

Oligodendrocyte pathology is increasingly implicated in neurodegenerative diseases as oligodendrocytes both myelinate and provide metabolic support to axons. In multiple sclerosis (MS), demyelination in the central nervous system thus leads to neurodegeneration, but the severity of MS between patients is very variable. Disability does not correlate well with the extent of demyelination, which suggests that other factors contribute to this variability. One such factor may be oligodendrocyte heterogeneity. Not all oligodendrocytes are the same—those from the mouse spinal cord inherently produce longer myelin sheaths than those from the cortex, and single-cell analysis of the mouse central nervous system identified further differences. However, the extent of human oligodendrocyte heterogeneity and its possible contribution to MS pathology remain unknown. Here we performed single-nucleus RNA sequencing from white matter areas of post- mortem human brain from patients with MS and from unaffected controls. We identified subclusters of oligodendroglia in control human white matter, some with similarities to mouse, and defined new markers for these cell states. Notably, some subclusters were underrepresented in MS tissue, whereas others were more prevalent. These differences in mature oligodendrocyte subclusters may indicate different functional states of oligodendrocytes in MS lesions. We found similar changes in normal-appearing white matter, showing that MS is a more diffuse disease than its focal demyelination suggests. Our findings of an altered oligodendroglial heterogeneity in MS may be important for understanding disease progression and developing therapeutic approaches.

Charles ffrench-ConstantUniversity of Edinburghcffc@ed.ac.uk
Anna WilliamsUniversity of Edinburghanna.williams@ed.ac.uk
Gonçalo Castelo-BrancoKarolinska Institutetgoncalo.castelo-branco@ki.se
Sarah Jäkel (Experimental Scientist)1
Eneritz Agirre (Experimental Scientist)2
Ana M Falcão (Experimental Scientist)2
David van Bruggen (Computational Scientist)2
Ka W Lee (Computational Scientist)2
Irene Knuesel (Principal Investigator)3
Dheeraj Malhotra (Principal Investigator)3
Charles ffrench-Constant (Principal Investigator)1
Anna Williams (Principal Investigator)1
Gonçalo Castelo-Branco (Principal Investigator)2
1University of Edinburgh
2Karolinska Institutet
3Roche ITC Basel
Enrique Sapena Ventura

To reference this project, please use the following link:

https://ma-pilot.explore.data.humancellatlas.dev.clevercanary.com/projects/38449aea-70b5-40db-84b3-1e08f32efe34

Supplementary links are provided by contributors and represent items such as additional data which can’t be hosted here; code that was used to analyze this data; or tools and visualizations associated with this specific dataset.

1.https://castelobranco.shinyapps.io/MSCtrl_CCA_18/2.https://ki.se/en/mbb/oligointernode3.https://www.ebi.ac.uk/ega/studies/EGAS00001003412
GEO Series Accessions:
INSDC Project Accessions:
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BioStudies Accessions:

Atlas

None

Analysis Portals

CZ CELLxGENE
CZ CELLxGENE
UCSC Cell Browser
UCSC Cell Browser

Project Label

Oligodendrocyte_MS

Species

Homo sapiens

Sample Type

specimens

Anatomical Entity

brain

Organ Part

Unspecified

Selected Cell Types

Unspecified

Disease Status (Specimen)

2 disease statuses

Disease Status (Donor)

9 disease statuses

Development Stage

human adult stage

Library Construction Method

10X 3' v2 sequencing

Nucleic Acid Source

single nucleus

Paired End

false

File Format

4 file formats

Cell Count Estimate

21.9k

Donor Count

9
bam20 file(s)fastq.gz60 file(s)loom21 file(s)txt.gz2 file(s)
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