MLL1 is required for PAX7 expression and satellite cell self-renewal in mice
PAX7 is a paired-homeobox transcription factor that specifies the myogenic identity of muscle stem cells and acts as a nodal factor by stimulating proliferation while inhibiting differentiation. We previously found that PAX7 recruits the H3K4 methyltransferases MLL1/2 to epigenetically activate targ...
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Veröffentlicht in: | Nature communications 2019-09, Vol.10 (1), p.4256-14, Article 4256 |
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Sprache: | eng |
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Zusammenfassung: | PAX7 is a paired-homeobox transcription factor that specifies the myogenic identity of muscle stem cells and acts as a nodal factor by stimulating proliferation while inhibiting differentiation. We previously found that PAX7 recruits the H3K4 methyltransferases MLL1/2 to epigenetically activate target genes. Here we report that in the absence of
Mll1
, myoblasts exhibit reduced H3K4me3 at both
Pax7
and
Myf5
promoters and reduced
Pax7
and
Myf5
expression.
Mll1
-deficient myoblasts fail to proliferate but retain their differentiation potential, while deletion of
Mll2
had no discernable effect. Re-expression of PAX7 in committed
Mll1
cKO myoblasts restored H3K4me3 enrichment at the
Myf5
promoter and
Myf5
expression. Deletion of
Mll1
in satellite cells reduced satellite cell proliferation and self-renewal, and significantly impaired skeletal muscle regeneration.
Pax7
expression was unaffected in quiescent satellite cells but was markedly downregulated following satellite cell activation. Therefore, MLL1 is required for PAX7 expression and satellite cell function in vivo. Furthermore, PAX7, but not MLL1, is required for
Myf5
transcriptional activation in committed myoblasts.
PAX7 transcription factor specifies the myogenic identity of muscle stem cells and acts as a nodal factor by stimulating proliferation while inhibiting differentiation. Here authors find that Mll1 deletion in myoblasts in mice results in reduced H3K4me3 at both Pax7 and Myf5 promoters, reduced Pax7 and Myf5 expression, and proliferation defects. |
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ISSN: | 2041-1723 2041-1723 |
DOI: | 10.1038/s41467-019-12086-9 |