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EZH2 ensures normal cortical differentiation by repression of phosphodiesterases PDE1B, 3A, and 7A and of PRKAR1B.
Study reports that mouse R1beta gene produces three alternative splice variants (designated as mR1beta1, mR1beta2 and mR1beta3) that have different N-terminal protein structures.
Three transcripts that arise due to alternative splicing in pre-mRNA and alternative promoter usage in 5' UTR of Prkar1b gene, are demonstrated.
Activation/accumulation of beta I protein kinase C is involved in superoxide (O2-) production, primarily initiated at the phagosomal cup/phagosome during Fc gamma receptor-mediated phagocytosis in microglia.
No pathogenic PRKAR1B mutations were found in early onset familial dementia patients in a Dutch cohort.
This study demonistrated that PRKAR1B mutation associated with a new neurodegenerative disorder with unique pathology.
The paired-like homeodomain protein, Arix, mediates protein kinase A-stimulated dopamine beta-hydroxylase gene transcription through its phosphorylation status
RIalpha and RIbeta homodimers as well as an RIalpha:RIbeta heterodimer and several of the mutants were able to bind to the R-binding domain of AKAP149/D-AKAP1
Cyclic AMP-dependent protein kinase A (PKA) is an essential enzyme in the signaling pathway of the second messenger cAMP. Through phosphorylation of target proteins, PKA controls many biochemical events in the cell including regulation of metabolism, ion transport, and gene transcription. The PKA holoenzyme is composed of 2 regulatory and 2 catalytic subunits and dissociates from the regulatory subunits upon binding of cAMP.
protein kinase, cAMP-dependent, regulatory, type I, beta
, cAMP-dependent protein kinase type I-beta regulatory subunit-like
, cAMP dependent regulatory type I beta subunit transcript 2
, cAMP dependent regulatory type I beta subunit transcript 3
, cAMP dependent regulatory type I beta subunit transcript 4
, cAMP-dependent protein kinase type I-beta regulatory subunit
, cAMP dependent protein kinase, subunit type 1 beta