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PMID: 19264965 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

MLL5, a trithorax homolog, indirectly regulates H3K4 methylation, represses cyclin A2 expression, and promotes myogenic differentiation.

Sebastian S, Sreenivas P, Sambasivan R, Cheedipudi S, Kandalla P, Pavlath GK, Dhawan J

Abstract

Most cells in adult tissues are nondividing. In skeletal muscle, differentiated myofibers have exited the cell cycle permanently, whereas satellite stem cells withdraw transiently, returning to active proliferation to repair damaged myofibers. We have examined the epigenetic mechanisms operating in conditional quiescence by analyzing the function of a predicted chromatin regulator mixed lineage leukemia 5 (MLL5) in a culture model of reversible arrest. MLL5 is induced in quiescent myoblasts and regulates both the cell cycle and differentiation via a hierarchy of chromatin and transcriptional regulators. Knocking down MLL5 delays entry of quiescent myoblasts into S phase, but hastens S-phase completion. Cyclin A2 (CycA) mRNA is no longer restricted to S phase, but is induced throughout G(0)/G(1), with activation of the cell cycle regulated element (CCRE) in the CycA promoter. Overexpressed MLL5 physically associates with the CCRE and impairs its activity. MLL5 also regulates CycA indirectly: Cux, an activator of CycA promoter and S phase is induced in RNAi cells, and Brm/Brg1, CCRE-binding repressors that promote differentiation are repressed. In knockdown cells, H3K4 methylation at the CCRE is reduced, reflecting quantitative global changes in methylation. MLL5 appears to lack intrinsic histone methyl transferase activity, but regulates expression of histone-modifying enzymes LSD1 and SET7/9, suggesting an indirect mechanism. Finally, expression of muscle regulators Pax7, Myf5, and myogenin is impaired in MLL5 knockdown cells, which are profoundly differentiation defective. Collectively, our results suggest that MLL5 plays an integral role in novel chromatin regulatory mechanisms that suppress inappropriate expression of S-phase-promoting genes and maintain expression of determination genes in quiescent cells.

MeSH Terms
Animals Cell Differentiation Chromosomal Proteins, Non-Histone/chemistry,metabolism Cyclin A/genetics,metabolism Cyclin A2 Drosophila Proteins/chemistry G1 Phase Gene Knockdown Techniques Histone-Lysine N-Methyltransferase/deficiency,metabolism Histones/metabolism Lysine/metabolism Methylation Mice Myoblasts/cytology,enzymology Protein Binding RNA Interference Repressor Proteins/metabolism Response Elements/genetics S Phase Sequence Homology, Amino Acid Transcription Factors/metabolism Transcription, Genetic
Chemicals
CCNA2 protein, mouse Chromosomal Proteins, Non-Histone Cyclin A Cyclin A2 Drosophila Proteins Histones Repressor Proteins SWI-SNF-B chromatin-remodeling complex Transcription Factors trx protein, Drosophila Histone-Lysine N-Methyltransferase MLL5 protein, mouse Lysine
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Sebastian Soji
Centre for Cellular and Molecular Biology, Hyderabad, 500 007 India.
Sreenivas Prethish
Sambasivan Ramkumar
Cheedipudi Sirisha
Kandalla Prashanth
Pavlath Grace K
Dhawan Jyotsna
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Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
1091-6490
Published
2009-03-24
Epub
2009-00-05
Pages
4719-24
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC2651835
Subset
IM
Grants
Wellcome Trust · United Kingdom
Databases
GEO
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