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Diabetes|December 6, 2017
Glucocorticoids Reprogram β-Cell Signaling to Preserve Insulin SecretionNicholas H F Fine, Craig L Doig, Yasir S Elhassan, et al.Nature Communications|October 30, 2022
G<sub>i/o</sub> protein-coupled receptor inhibition of beta-cell electrical excitability and insulin secretion depends on Na<sup>+</sup>/K<sup>+</sup> ATPase activationMatthew T Dickerson, Prasanna K Dadi, Karolina E Zaborska, et al.Molecular Metabolism|August 1, 2020
Lactate activation of α-cell K<sub>ATP</sub> channels inhibits glucagon secretion by hyperpolarizing the membrane potential and reducing Ca<sup>2+</sup> entryKarolina E Zaborska, Prasanna K Dadi, Matthew T Dickerson, et al.Development (Cambridge, England)|August 4, 2021
TRPM7 is a crucial regulator of pancreatic endocrine development and high-fat-diet-induced β-cell proliferationMolly K Altman, Charles M Schaub, Prasanna K Dadi, et al.Diabetes|February 3, 2025
Atf4 Protects Islet β-Cell Identity and Function Under Acute Glucose-Induced Stress but Promotes β-Cell Failure in the Presence of Free Fatty AcidMahircan Yagan, Sadia Najam, Ruiying Hu, et al.The Journal of Biological Chemistry|February 17, 2022
Glucose-6-phosphatase catalytic subunit 2 negatively regulates glucose oxidation and insulin secretion in pancreatic β-cellsMohsin Rahim, Arya Y Nakhe, Deveena R Banerjee, et al.Developmental Cell|January 9, 2019
Neurog3-Independent Methylation Is the Earliest Detectable Mark Distinguishing Pancreatic Progenitor IdentityJing Liu, Amrita Banerjee, Charles A Herring, et al.International Journal of Molecular Sciences|June 2, 2021
KCNK3 Mutation Causes Altered Immune Function in Pulmonary Arterial Hypertension Patients and Mouse ModelsJames D West, Eric D Austin, Elise M Rizzi, et al.The Journal of Pharmacology and Experimental Therapeutics|June 16, 2019
Structure-Activity Relationships, Pharmacokinetics, and Pharmacodynamics of the Kir6.2/SUR1-Specific Channel Opener VU0071063Sujay V Kharade, Juan Vicente Sanchez-Andres, Mark G Fulton, et al.Diabetes|April 5, 2020
Coregulator Sin3a Promotes Postnatal Murine β-Cell Fitness by Regulating Genes in Ca<sup>2+</sup> Homeostasis, Cell Survival, Vesicle Biosynthesis, Glucose Metabolism, and Stress ResponseXiaodun Yang, Sarah M Graff, Cody N Heiser, et al.Pageof 8