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Differential Localizations Of Protein Phosphatase 1 Isoforms Determine Their Physiological Function In The Heart, Ruijie Liu, Christian Miller, Christiana D'Annibale, Kimberly Vo, Ashley Jacobs Feb 2019

Differential Localizations Of Protein Phosphatase 1 Isoforms Determine Their Physiological Function In The Heart, Ruijie Liu, Christian Miller, Christiana D'Annibale, Kimberly Vo, Ashley Jacobs

Peer Reviewed Articles

Protein phosphatase 1 isoforms α, β, and γ (PP1α, PP1β, and PP1γ) are highly homologous in the catalytic domains but have distinct subcellular localizations. In this study, we utilized both primary cell culture and knockout mice to investigate the isoform-specific roles of PP1s in the heart. In both neonatal and adult cardiac myocytes, PP1β was mainly localized in the nucleus, compared to the predominant presence of PP1α and PP1γ in the cytoplasm. Adenovirus-mediated overexpression of PP1α led to decreased phosphorylation of phospholamban, which was not influenced by overexpression of either PP1β or PP1γ. Interestingly, only cardiac-specific knockout of PP1β resulted …


Palmitoylation Regulates Intracellular Trafficking Of Β2 Adrenergic Receptor/Arrestin/Phosphodiesterase 4d Complexes In Cardiomyocytes, Ruijie Liu, Dayong Wang, Qian Shi, Qin Fu, Steven Hizon, Yang K. Xiang Aug 2012

Palmitoylation Regulates Intracellular Trafficking Of Β2 Adrenergic Receptor/Arrestin/Phosphodiesterase 4d Complexes In Cardiomyocytes, Ruijie Liu, Dayong Wang, Qian Shi, Qin Fu, Steven Hizon, Yang K. Xiang

Peer Reviewed Articles

β2 adrenergic receptor (β2AR) is a prototypical G-protein coupled receptor that stimulates the classic cAMP-protein kinase A (PKA) signaling pathway. Recent studies indicate that the cAMP-PKA activities are spatiotemporally regulated in part due to dynamic association of β2AR with phosphodiesterase 4D (PDE4D), a group of cAMP degradation enzymes. Here, we demonstrate that in cardiomyocytes, palmitoylation of β2AR, the covalent acylation of cysteine residue 341, plays a critical role in shaping subcellular cAMP-PKA activities in cardiomyocytes via regulating β2AR association with arrestin/PDE4D. Replacing cysteine 341 on β2AR with alanine (C341A) …