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Site Information |
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IVDQRPssRAssRAs SwissProt Entrez-Gene |
Blast this site against: NCBI SwissProt PDB |
Site Group ID: 459207 |
In vivo Characterization | |
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Methods used to characterize site in vivo: | |
Disease tissue studied: | |
Relevant cell line - cell type - tissue: |
Upstream Regulation | |
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Downstream Regulation | |
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Effects of modification on GJA1: |
References | |
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Solan JL, Lampe PD (2020) Src Regulation of Cx43 Phosphorylation and Gap Junction Turnover. Biomolecules 10
33255329 Curated Info |
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Cotter ML, et al. (2019) The lipidated connexin mimetic peptide, SRPTEKT-, is a potent inhibitor of Cx43 channels with specificity for the pS368 phospho-isoform. Am J Physiol Cell Physiol
31365296 Curated Info |
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Jabr RI, et al. (2016) Regulation of gap junction conductance by calcineurin through Cx43 phosphorylation: implications for action potential conduction. Pflugers Arch 468, 1945-1955
27757582 Curated Info |
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Grosely R, et al. (2013) Effects of Phosphorylation on the Structure and Backbone Dynamics of the Intrinsically Disordered Connexin43 C-terminal Domain. J Biol Chem 288, 24857-70
23828237 Curated Info |
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Klammer M, et al. (2012) Phosphosignature predicts dasatinib response in non-small cell lung cancer. Mol Cell Proteomics 11, 651-68
22617229 Curated Info |
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Hsu PP, et al. (2011) The mTOR-regulated phosphoproteome reveals a mechanism of mTORC1-mediated inhibition of growth factor signaling. Science 332, 1317-22
21659604 Curated Info |
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Rigbolt KT, et al. (2011) System-wide temporal characterization of the proteome and phosphoproteome of human embryonic stem cell differentiation. Sci Signal 4, rs3
21406692 Curated Info |
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Wang YT, et al. (2010) An informatics-assisted label-free quantitation strategy that depicts phosphoproteomic profiles in lung cancer cell invasion. J Proteome Res 9, 5582-97
20815410 Curated Info |
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Thingholm TE, et al. (2008) TiO2-Based Phosphoproteomic Analysis of the Plasma Membrane and the Effects of Phosphatase Inhibitor Treatment. J Proteome Res 7, 3304-3313
18578522 Curated Info |