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PMID: 19212323 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Chromatin remodelling factor Mll1 is essential for neurogenesis from postnatal neural stem cells.

Nature ·Vol. 458 ·No. 7237 ·2009-03-26 ·Pages 529-33

Lim DA, Huang YC, Swigut T, Mirick AL, Garcia-Verdugo JM, Wysocka J, Ernst P, Alvarez-Buylla A

Abstract

Epigenetic mechanisms that maintain neurogenesis throughout adult life remain poorly understood. Trithorax group (trxG) and Polycomb group (PcG) gene products are part of an evolutionarily conserved chromatin remodelling system that activate or silence gene expression, respectively. Although PcG member Bmi1 has been shown to be required for postnatal neural stem cell self-renewal, the role of trxG genes remains unknown. Here we show that the trxG member Mll1 (mixed-lineage leukaemia 1) is required for neurogenesis in the mouse postnatal brain. Mll1-deficient subventricular zone neural stem cells survive, proliferate and efficiently differentiate into glial lineages; however, neuronal differentiation is severely impaired. In Mll1-deficient cells, early proneural Mash1 (also known as Ascl1) and gliogenic Olig2 expression are preserved, but Dlx2, a key downstream regulator of subventricular zone neurogenesis, is not expressed. Overexpression of Dlx2 can rescue neurogenesis in Mll1-deficient cells. Chromatin immunoprecipitation demonstrates that Dlx2 is a direct target of MLL in subventricular zone cells. In differentiating wild-type subventricular zone cells, Mash1, Olig2 and Dlx2 loci have high levels of histone 3 trimethylated at lysine 4 (H3K4me3), consistent with their transcription. In contrast, in Mll1-deficient subventricular zone cells, chromatin at Dlx2 is bivalently marked by both H3K4me3 and histone 3 trimethylated at lysine 27 (H3K27me3), and the Dlx2 gene fails to properly activate. These data support a model in which Mll1 is required to resolve key silenced bivalent loci in postnatal neural precursors to the actively transcribed state for the induction of neurogenesis, but not for gliogenesis.

MeSH Terms
Animals Animals, Newborn Basic Helix-Loop-Helix Transcription Factors/metabolism Cell Differentiation Cell Lineage Cell Proliferation Cell Survival Cells, Cultured Chromatin/metabolism Chromatin Assembly and Disassembly Chromatin Immunoprecipitation Histone-Lysine N-Methyltransferase Histones/metabolism Homeodomain Proteins/chemistry,genetics,metabolism Methylation Mice Myeloid-Lymphoid Leukemia Protein/deficiency,genetics,metabolism Nerve Tissue Proteins/metabolism Neurogenesis Neuroglia/cytology,metabolism Neurons/cytology,metabolism Olfactory Bulb/cytology,metabolism Oligodendrocyte Transcription Factor 2 Stem Cells/cytology,metabolism Transcription Factors/chemistry,genetics,metabolism
Chemicals
Ascl1 protein, mouse Basic Helix-Loop-Helix Transcription Factors Chromatin Distal-less homeobox proteins Histones Homeodomain Proteins Nerve Tissue Proteins Olig2 protein, mouse Oligodendrocyte Transcription Factor 2 Transcription Factors Myeloid-Lymphoid Leukemia Protein Histone-Lysine N-Methyltransferase Kmt2a protein, mouse
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Lim Daniel A
Department of Neurological Surgery, University of California, San Francisco, 505 Parnassus Street M779, San Francisco, California 94143, USA. [email protected]
Huang Yin-Cheng
Swigut Tomek
Mirick Anika L
Garcia-Verdugo Jose Manuel
Wysocka Joanna
Ernst Patricia
Alvarez-Buylla Arturo
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Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2009-03-26
Epub
2009-00-11
Pages
529-33
Language
English
Region
England
NLM ID
0410462
PMCID
PMC3800116
Subset
IM
Grants
NINDS NIH HHS · R37 NS028478 · United States
NINDS NIH HHS · 5R37-NS028478 · United States
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