Katherine E. Squires

Affiliations: 
Emory University, Atlanta, GA 
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"Katherine Squires"
Mean distance: 17.73 (cluster 6)
 
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Publications

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Alexander SPH, Kelly E, Mathie AA, et al. (2023) The Concise Guide to PHARMACOLOGY 2023/24: Introduction and Other Protein Targets. British Journal of Pharmacology. S1-S22
Friedman PA, Sneddon WB, Mamonova T, et al. (2022) RGS14 regulates hormone-sensitive NPT2A-mediated renal phosphate uptake via binding to the NHERF1 scaffolding protein. The Journal of Biological Chemistry. 101836
Alexander SP, Kelly E, Mathie A, et al. (2021) THE CONCISE GUIDE TO PHARMACOLOGY 2021/22: Introduction and Other Protein Targets. British Journal of Pharmacology. 178: S1-S26
Squires KE, Gerber KJ, Tillman MC, et al. (2020) Human genetic variants disrupt RGS14 nuclear shuttling and regulation of LTP in hippocampal neurons. The Journal of Biological Chemistry. 296: 100024
Squires KE, Gerber KJ, Tillman MC, et al. (2020) Human genetic variants disrupt RGS14 nuclear shuttling and regulation of LTP in hippocampal neurons. The Journal of Biological Chemistry
Gerber KJ, Squires KE, Hepler JR. (2019) Correction: 14-3-3γ binds regulator of G protein signaling 14 (RGS14) at distinct sites to inhibit the RGS14:Gα-AlF signaling complex and RGS14 nuclear localization. The Journal of Biological Chemistry. 294: 12262
Gerber KJ, Squires KE, Hepler JR. (2018) 14-3-3γ binds RGS14 at distinct sites to inhibit the RGS14:Gαi-AlFsignaling complex and RGS14 nuclear localization. The Journal of Biological Chemistry
Squires KE, Montañez-Miranda C, Pandya RR, et al. (2018) Genetic Analysis of Rare Human Variants of Regulators of G Protein Signaling Proteins and Their Role in Human Physiology and Disease. Pharmacological Reviews. 70: 446-474
Squires KE, Gerber KJ, Pare JF, et al. (2017) Regulator of G protein signaling 14 (RGS14) is expressed pre- and postsynaptically in neurons of hippocampus, basal ganglia, and amygdala of monkey and human brain. Brain Structure & Function
Cubells JF, Schroeder JP, Barrie ES, et al. (2016) Human Bacterial Artificial Chromosome (BAC) Transgenesis Fully Rescues Noradrenergic Function in Dopamine β-Hydroxylase Knockout Mice. Plos One. 11: e0154864
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