Oligodendrocytes depend on MCL-1 to prevent spontaneous apoptosis and white matter degeneration
Neurologic disorders often disproportionately affect specific brain regions, and different apoptotic mechanisms may contribute to white matter pathology in leukodystrophies or gray matter pathology in poliodystrophies. We previously showed that neural progenitors that generate cerebellar gray matter...
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Veröffentlicht in: | Cell death & disease 2021-12, Vol.12 (12), p.1133-1133, Article 1133 |
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Sprache: | eng |
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Zusammenfassung: | Neurologic disorders often disproportionately affect specific brain regions, and different apoptotic mechanisms may contribute to white matter pathology in leukodystrophies or gray matter pathology in poliodystrophies. We previously showed that neural progenitors that generate cerebellar gray matter depend on the anti-apoptotic protein BCL-xL. Conditional deletion of
Bcl-xL
in these progenitors produces spontaneous apoptosis and cerebellar hypoplasia, while similar conditional deletion of
Mcl-1
produces no phenotype. Here we show that, in contrast, postnatal oligodendrocytes depend on MCL-1. We found that brain-wide
Mcl-1
deletion caused apoptosis specifically in mature oligodendrocytes while sparing astrocytes and oligodendrocyte precursors, resulting in impaired myelination and progressive white matter degeneration. Disabling apoptosis through co-deletion of
Bax
or
Bak
rescued white matter degeneration, implicating the intrinsic apoptotic pathway in
Mcl-1
-dependence.
Bax
and
Bak
co-deletions rescued different aspects of the
Mcl-1
-deleted phenotype, demonstrating their discrete roles in white matter stability. MCL-1 protein abundance was reduced in
eif2b5
-mutant mouse model of the leukodystrophy vanishing white matter disease (VWMD), suggesting the potential for MCL-1 deficiency to contribute to clinical neurologic disease. Our data show that oligodendrocytes require MCL-1 to suppress apoptosis, implicate MCL-1 deficiency in white matter pathology, and suggest apoptosis inhibition as a leukodystrophy therapy. |
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ISSN: | 2041-4889 2041-4889 |
DOI: | 10.1038/s41419-021-04422-z |