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Calcineurin dephosphorylates glycogen synthase kinase-3 beta at serine-9 in neuroblast-derived cells
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DSCR1/RCAN1 regulates vesicle exocytosis and fusion pore kinetics: implications for Down syndrome and Alzheimer's disease
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NF-κB-inducing kinase phosphorylates and blocks the degradation of down syndrome candidate region 1
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The Down syndrome critical region protein RCAN1 regulates long-term potentiation and memory via inhibition of phosphatase signaling
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Renaming the DSCR1/Adapt78 gene family as RCAN:: regulators of calcineurin
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Calcineurin potentiates the activation of procaspase-3 by accelerating its proteolytic maturation
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RCAN1-1L is overexpressed in neurons of Alzheimer's disease patients
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RCAN1 (DSCR1 or Adapt78) stimulates expression of GSK-3β
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MCIP1 overexpression suppresses left ventricular remodeling and sustains cardiac function after myocardial infarction
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GSK-3 kinases enhance calcineurin signaling by phosphorylation of RCNs
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Vascular endothelial growth factor-and thrombin-induced termination factor, down syndrome critical region-1, attenuates endothelial cell proliferation and angiogenesis
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The DSCR1 (Adapt78) isoform 1 protein calcipressin 1 inhibits calcineurin and protects against acute calcium-mediated stress damage, including transient oxidative stress
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Myocyte-enriched calcineurin-interacting protein, MCIP1, inhibits cardiac hypertrophy in vivo
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DSCR1, overexpressed in Down syndrome, is an inhibitor of calcineurin-mediated signaling pathways
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A protein encoded within the Down syndrome critical region is enriched in striated muscles and inhibits calcineurin signaling
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