Publications

Found 38 results
Filters: Author is Pitt, Geoffrey S  [Clear All Filters]
Journal Article
Yang J, Wang Z, Sinden DS, Wang X, Shan B, Yu X, Zhang H, Pitt GS, Wang C. FGF13 modulates the gating properties of the cardiac sodium channel Nav1.5 in an isoform-specific manner. Channels (Austin). 2016;10(5):410-420.
Ghazizadeh Z, Zhu J, Fattahi F, Tang A, Sun X, Amin S, Tsai S-Y, Khalaj M, Zhou T, Samuel RM, Zhang T, Ortega FA, Gordillo M, Moroziewicz D, Paull D, Noggle SA, Xiang JZhaoying, Studer L, Christini DJ, Pitt GS, Evans T, Chen S. A dual SHOX2:GFP; MYH6:mCherry knockin hESC reporter line for derivation of human SAN-like cells. iScience. 2022;25(4):104153.
Pablo JL, Pitt GS. Divide, multitask, and conquer: Coordination in channel regulation. Channels (Austin). 2017;:1-3.
Kushner JS, Liu G, Eisert RJ, Bradshaw GA, Pitt GS, J Hinson T, Kalocsay M, Marx SO. Detecting Cardiovascular Protein-Protein Interactions by Proximity Proteomics. Circ Res. 2022;130(2):273-287.
Pitt GS, Lee S-Y. Current view on regulation of voltage-gated sodium channels by calcium and auxiliary proteins. Protein Sci. 2016;25(9):1573-84.
Wang X, Tang H, Wei EQ, Wang Z, Yang J, Yang R, Wang S, Zhang Y, Pitt GS, Zhang H, Wang C. Conditional knockout of Fgf13 in murine hearts increases arrhythmia susceptibility and reveals novel ion channel modulatory roles. J Mol Cell Cardiol. 2017;104:63-74.
Naderi J, Johnson AKelsey, Thakkar H, Chandravanshi B, Ksiazek A, Anand A, Vincent V, Tran A, Kalimireddy A, Singh P, Sood A, Das A, Talbot CLamar, Distefano IA, J Maschek A, Cox J, Li Y, Summers SA, Atkinson DJ, Turapov T, Ratcliff JA, Fung J, Shabbir A, M Yassin S, Shiow S-AToh Ee, Holland WL, Pitt GS, Chaurasia B. Ceramide-induced FGF13 impairs systemic metabolic health. Cell Metab. 2025;.
Balestrini S, Mikati MA, Garcia-Roves RAlvarez, Carboni M, Hunanyan AS, Kherallah B, McLean M, Prange L, De Grandis E, Gagliardi A, Pisciotta L, Stagnaro M, Veneselli E, Campistol J, Fons C, Pias-Peleteiro L, Brashear A, Miller C, Samoes R, Brankovic V, Padiath QS, Potic A, Pilch J, Vezyroglou K, Bye AME, Davis AM, Ryan MM, Semsarian C, Hollingsworth G, Scheffer IE, Granata T, Nardocci N, Ragona F, Arzimanoglou A, Panagiotakaki E, Carrilho I, Zucca C, Novy J, Dzieżyc K, Parowicz M, Mazurkiewicz-Bełdzińska M, Weckhuysen S, Pons R, Groppa S, Sinden DS, Pitt GS, Tinker A, Ashworth M, Michalak Z, Thom M, J Cross H, Vavassori R, Kaski JP, Sisodiya SM. Cardiac phenotype in -related syndromes: A multicentre cohort study. Neurology. 2020;.
Yang L, Katchman A, Kushner J, Kushnir A, Zakharov SI, Chen B-X, Shuja Z, Subramanyam P, Liu G, Papa A, Roybal D, Pitt GS, Colecraft HM, Marx SO. Cardiac CaV1.2 channels require β subunits for β-adrenergic-mediated modulation but not trafficking. J Clin Invest. 2019;129(2):647-658.
Yan H, Wang C, Marx SO, Pitt GS. Calmodulin limits pathogenic Na+ channel persistent current. J Gen Physiol. 2017;149(2):277-293.
Pitt GS, Lee S-Y. Ca/CaM interaction with voltage-gated Na channels. Proc Natl Acad Sci U S A. 2019;.
Cao C, Oswald AB, Fabella BA, Ren Y, Rodriguiz R, Trainor G, Greenblatt MB, Hilton MJ, Pitt GS. The Ca1.2 L-type calcium channel regulates bone homeostasis in the middle and inner ear. Bone. 2019;125:160-168.
Katchman AN, Zakharov SI, Bohnen MS, Jimenez ASanchez, Kushner JS, Yang L, Chen B-X, Nasari A, Liu G, Rabbani DE, Han J, Leu C-S, Pitt GS, Marx SO. Augmented Cardiac Inotropy by Phosphodiesterase Inhibition Requires Phosphorylation of Rad and Increased Calcium Current. Circulation. 2024;149(20):1617-1620.