The SGLT2 inhibitor dapagliflozin improves kidney function in glycogen storage disease XI

达帕格列嗪 过剩2 内分泌学 内科学 糖原 葡萄糖转运蛋白 范科尼综合征 肾 化学 生物 医学 胰岛素 糖尿病 2型糖尿病
作者
Francesco Trepiccione,Anna Iervolino,Mariavittoria D’Acierno,Sabrina Siccardi,Vincenzo Costanzo,Donato Sardella,Luigi Regenburgh De La Motte,Luciano D’Apolito,Antonio Miele,Alessandra Perna,Giovanna Capolongo,Miriam Zacchia,Sebastian Frische,Rikke Nielsen,Leopoldo Staiano,Irene Sambri,Rossella De Cegli,Robert J. Unwin,Dominique Eladari,Giovambattista Capasso
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:15 (720): eabn4214-eabn4214 被引量:18
标识
DOI:10.1126/scitranslmed.abn4214
摘要

Glycogen storage disease XI, also known as Fanconi-Bickel syndrome (FBS), is a rare autosomal recessive disorder caused by mutations in the SLC2A2 gene that encodes the glucose-facilitated transporter type 2 (GLUT2). Patients develop a life-threatening renal proximal tubule dysfunction for which no treatment is available apart from electrolyte replacement. To investigate the renal pathogenesis of FBS, SLC2A2 expression was ablated in mouse kidney and HK-2 proximal tubule cells. GLUT2 Pax8Cre+ mice developed time-dependent glycogen accumulation in proximal tubule cells and recapitulated the renal Fanconi phenotype seen in patients. In vitro suppression of GLUT2 impaired lysosomal autophagy as shown by transcriptomic and biochemical analysis. However, this effect was reversed by exposure to a low glucose concentration, suggesting that GLUT2 facilitates the homeostasis of key cellular pathways in proximal tubule cells by preventing glucose toxicity. To investigate whether targeting proximal tubule glucose influx can limit glycogen accumulation and correct symptoms in vivo, we treated mice with the selective SGLT2 inhibitor dapagliflozin. Dapagliflozin reduced glycogen accumulation and improved metabolic acidosis and phosphaturia in the animals by normalizing the expression of Napi2a and NHE3 transporters. In addition, in a patient with FBS, dapagliflozin was safe, improved serum potassium and phosphate concentrations, and reduced glycogen content in urinary shed cells. Overall, this study provides proof of concept for dapagliflozin as a potentially suitable therapy for FBS.
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