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Publication : A direct HDAC4-MAP kinase crosstalk activates muscle atrophy program.

First Author  Choi MC Year  2012
Journal  Mol Cell Volume  47
Issue  1 Pages  122-32
PubMed ID  22658415 Mgi Jnum  J:188016
Mgi Id  MGI:5438899 Doi  10.1016/j.molcel.2012.04.025
Citation  Choi MC, et al. (2012) A direct HDAC4-MAP kinase crosstalk activates muscle atrophy program. Mol Cell 47(1):122-32
abstractText  Prolonged deficits in neural input activate pathological muscle remodeling, leading to atrophy. In denervated muscle, activation of the atrophy program requires HDAC4, a potent repressor of the master muscle transcription factor MEF2. However, the signaling mechanism that connects HDAC4, a protein deacetylase, to the atrophy machinery remains unknown. Here, we identify the AP1 transcription factor as a critical target of HDAC4 in neurogenic muscle atrophy. In denervated muscle, HDAC4 activates AP1-dependent transcription, whereas AP1 inactivation recapitulates HDAC4 deficiency and blunts the muscle atrophy program. We show that HDAC4 activates AP1 independently of its canonical transcriptional repressor activity. Surprisingly, HDAC4 stimulates AP1 activity by activating the MAP kinase cascade. We present evidence that HDAC4 binds and promotes the deacetylation and activation of a key MAP3 kinase, MEKK2. Our findings establish an HDAC4-MAPK-AP1 signaling axis essential for neurogenic muscle atrophy and uncover a direct crosstalk between acetylation- and phosphorylation-dependent signaling cascades.
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