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  MK3 controls Polycomb target gene expression via negative feedback on ERK

Prickaerts, P., Niessen, H. E. C., Mouchel-Vielh, E., Dahlmans, V. E. H., van den Akker, G. G. H., Geijselaers, C., et al. (2012). MK3 controls Polycomb target gene expression via negative feedback on ERK. EPIGENETICS & CHROMATIN, 5: 12. doi:10.1186/1756-8935-5-12.

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Prickaerts, Peggy1, Author
Niessen, Hanneke E. C.1, Author
Mouchel-Vielh, Emmanuele1, Author
Dahlmans, Vivian E. H.1, Author
van den Akker, Guus G. H.1, Author
Geijselaers, Claudia1, Author
Adriaens, Michiel E.1, Author
Spaapen, Frank1, Author
Takihara, Yoshihiro1, Author
Rapp, Ulf R.2, Author           
Peronnet, Frederique1, Author
Voncken, Jan Willem1, Author
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1external, ou_persistent22              
2Former Research Groups, Max Planck Institute of Biochemistry, Max Planck Society, ou_1565145              

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Free keywords: ACTIVATED PROTEIN-KINASE; EMBRYONIC STEM-CELLS; P38 MAPK; DEVELOPMENTAL REGULATORS; CHROMATIN-ASSOCIATION; H3 PHOSPHORYLATION; SIGNALING CASCADES; MAMMALIAN-CELLS; HISTONE H3; COMPLEXPolycomb; MAPKAPK3; MK3; ERK; epigenetic; feedback; dynamic;
 Abstract: Background: Gene-environment interactions are mediated by epigenetic mechanisms. Polycomb Group proteins constitute part of an epigenetic cellular transcriptional memory system that is subject to dynamic modulation during differentiation. Molecular insight in processes that control dynamic chromatin association and dissociation of Polycomb repressive complexes during and beyond development is limited. We recently showed that MK3 interacts with Polycomb repressive complex 1 (PRC1). The functional relevance of this interaction, however, remained poorly understood. MK3 is activated downstream of mitogen- and stress-activated protein kinases (M/SAPKs), all of which fulfill crucial roles during development. We here use activation of the immediate-early response gene ATF3, a bona fide PRC1 target gene, as a model to study how MK3 and its effector kinases MAPK/ERK and SAPK/P38 are involved in regulation of PRC1-dependent ATF3 transcription. Results: Our current data show that mitogenic signaling through ERK, P38 and MK3 regulates ATF3 expression by PRC1/chromatin dissociation and epigenetic modulation. Mitogenic stimulation results in transient P38-dependent H3S28 phosphorylation and ERK-driven PRC1/chromatin dissociation at PRC1 targets. H3S28 phosphorylation by itself appears not sufficient to induce PRC1/chromatin dissociation, nor ATF3 transcription, as inhibition of MEK/ERK signaling blocks BMI1/chromatin dissociation and ATF3 expression, despite induced H3S28 phosphorylation. In addition, we establish that concomitant loss of local H3K27me3 promoter marking is not required for ATF3 activation. We identify pERK as a novel signaling-induced binding partner of PRC1, and provide evidence that MK3 controls ATF3 expression in cultured cells via negative regulatory feedback on M/SAPKs. Dramatically increased ectopic wing vein formation in the absence of Drosophila MK in a Drosophila ERK gain-of-function wing vein patterning model, supports the existence of MK-mediated negative feedback regulation on pERK. Conclusion: We here identify and characterize important actors in a PRC1-dependent epigenetic signal/response mechanism, some of which appear to be nonspecific global responses, whereas others provide modular specificity. Our findings provide novel insight into a Polycomb-mediated epigenetic mechanism that dynamically controls gene transcription and support a direct link between PRC1 and cellular responses to changes in the microenvironment.

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Language(s): eng - English
 Dates: 2012-08-07
 Publication Status: Published online
 Pages: 13
 Publishing info: -
 Table of Contents: -
 Rev. Type: Peer
 Identifiers: ISI: 000311333300001
DOI: 10.1186/1756-8935-5-12
 Degree: -

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Title: EPIGENETICS & CHROMATIN
Source Genre: Journal
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Publ. Info: 236 GRAYS INN RD, FLOOR 6, LONDON WC1X 8HL, ENGLAND : BIOMED CENTRAL LTD
Pages: - Volume / Issue: 5 Sequence Number: 12 Start / End Page: - Identifier: ISSN: 1756-8935