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Phenotypic transcription factors epigenetically mediate cell growth control.


ABSTRACT: Ribosomal RNA (rRNA) genes are down-regulated during osteogenesis, myogenesis, and adipogenesis, necessitating a mechanistic understanding of interrelationships between growth control and phenotype commitment. Here, we show that cell fate-determining factors [MyoD, myogenin (Mgn), Runx2, C/EBPbeta] occupy rDNA loci and suppress rRNA expression during lineage progression, concomitant with decreased rRNA expression and reciprocal loss of occupancy by c-Myc, a proliferation-specific activator of rRNA transcription. We find interaction of phenotypic factors with the polymerase I activator upstream binding factor UBF-1 at interphase nucleoli, and this interaction is epigenetically retained on mitotic chromosomes at nucleolar organizing regions. Ectopic expression and RNA interference establish that MyoD, Mgn, Runx2, and C/EBPbeta each functionally suppress rRNA genes and global protein synthesis. We conclude that epigenetic control of ribosomal biogenesis by lineage-specific differentiation factors is a general developmental mechanism for coordinate control of cell growth and phenotype.

SUBMITTER: Ali SA 

PROVIDER: S-EPMC2373311 | biostudies-literature | 2008 May

REPOSITORIES: biostudies-literature

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Phenotypic transcription factors epigenetically mediate cell growth control.

Ali Syed A SA   Zaidi Sayyed K SK   Dacwag Caroline S CS   Salma Nunciada N   Young Daniel W DW   Shakoori Abdul R AR   Montecino Martin A MA   Lian Jane B JB   van Wijnen Andre J AJ   Imbalzano Anthony N AN   Stein Gary S GS   Stein Janet L JL  

Proceedings of the National Academy of Sciences of the United States of America 20080429 18


Ribosomal RNA (rRNA) genes are down-regulated during osteogenesis, myogenesis, and adipogenesis, necessitating a mechanistic understanding of interrelationships between growth control and phenotype commitment. Here, we show that cell fate-determining factors [MyoD, myogenin (Mgn), Runx2, C/EBPbeta] occupy rDNA loci and suppress rRNA expression during lineage progression, concomitant with decreased rRNA expression and reciprocal loss of occupancy by c-Myc, a proliferation-specific activator of rR  ...[more]

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