Metabolic Characterization and Glyceraldehyde-3-Phosphate Dehydrogenase-Dependent Regulation of Epithelial Sodium Channels in hPheo1 Wild-type andSDHBKnockdown Cells

Author:

Bala Niharika1,Yu Ling1,Liu Lauren P1,Shelton Laura2,Xu Yiling3,Ghayee Hans K34ORCID,Alli Abdel A15ORCID

Affiliation:

1. Department of Physiology and Aging, University of Florida College of Medicine , Gainesville, FL , USA

2. bitBiome Inc. , Tokyo , Japan

3. Department of Medicine, Division of Endocrinology & Metabolism, University of Florida College of Medicine, Gainesville, FL , USA

4. Malcom Randall VA Medical Center , Gainesville, FL , USA

5. Department of Medicine Division of Nephrology, Hypertension, and Renal Transplantation, University of Florida College of Medicine , Gainesville, FL , USA

Abstract

AbstractPheochromocytomas (PCC) and paragangliomas (PGL) are rare neuroendocrine tumors with limited curative treatment options outside of surgical resection. Patients with mutations in succinate dehydrogenase subunit B (SDHB) are at an increased risk of malignant and aggressive disease. As cation channels are associated with tumorigenesis, we studied the expression and activity of cation channels from the Degenerin superfamily in a progenitor cell line derived from a human PCC. hPheo1 wild-type (WT) and SDHB knockdown (KD) cells were studied to investigate whether epithelial sodium channels (ENaC) and acid-sensing ion channels (ASIC) are regulated by the activity of glyceraldehyde-3-phosphate dehydrogenase (GAPDH). First, we performed targeted metabolomic studies and quantified changes in glycolysis pathway intermediates and citric acid cycle intermediates using hPheo1 WT cells and SDHB KD cells. Next, we performed protein biochemistry and electrophysiology studies to characterize the protein expression and activity, respectively, of these ion channels. Our western blot experiments show both ENaC alpha and ASIC1/2 are expressed in both hPheo1 WT and SDHB KD cells, with lower levels of a cleaved 60 kDa form of ENaC in SDHB KD cells. Single-channel patch clamp studies corroborate these results and further indicate channel activity is decreased in SDHB KD cells. Additional experiments showed a more significant decreased membrane potential in SDHB KD cells, which were sensitive to amiloride compared to WT cells. We provide evidence for the differential expression and activity of ENaC and ASIC hybrid channels in hPheo1 WT and SDHB KD cells, providing an important area of investigation in understanding SDHB-related disease.

Publisher

The Endocrine Society

Subject

Endocrinology

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