ArticleCellular and molecular life sciences : CMLS2023
SGLT5 is the renal transporter for 1,5-anhydroglucitol, a major player in two rare forms of neutropenia.
Article in Cellular and molecular life sciences : CMLS, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 17 papers.
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Who cites it
17 citing papers in PubMed, 16 citations in OpenAlex.
- Trial
- Empagliflozin in GSD-Ib: Long-term safety and sustained recovery of neutrophil function including NET formation.Molecular genetics and metabolism reports · 2026Article
- Shifting Towards Empagliflozin First-Line Therapy in Glycogen Storage Disease Type Ib: A Nationwide Real-World Study.Journal of inherited metabolic disease · 2026Article
- Clinical Outcomes and Management in Late Diagnosed Siblings Affected With Attenuated GSD Ib.JIMD reports · 2026Article
- Metabolic Profiling of the EmDia Cohort by LC-MS Reveals Empagliflozin-Intake Associated Regulation of 1,5-anhydroglucitol and Urate.Proteomics · 2026Article
- The SLC-ome of membrane transport: From molecular discovery to physiology and clinical applications.Physiological reviews · 2025Review
- Spontaneous restoration of premature ovarian insufficiency and conception in a patient with glycogen storage disease type 1b managed with empagliflozin.Hormones (Athens, Greece) · 2025Article
- Pathophysiology of the Neutropenia of GSDIb and G6PC3 Deficiency: Origin, Metabolism and Elimination of 1,5-Anhydroglucitol.Journal of inherited metabolic disease · 2025Review
- High-Fructose-Induced Salt-Sensitive Hypertension: The Potential Benefit of SGLT4 or SGLT5 Modulation.Nutrients · 2025Review
- SGLT2 Inhibitors: From Structure-Effect Relationship to Pharmacological Response.International journal of molecular sciences · 2025Review
- Molecular mechanisms and computational insights into human SGLTs: advancing toward selective SGLT1 inhibition.Frontiers in molecular biosciences · 2025Review
- Profiling Cell Heterogeneity and Fructose Transporter Expression in the Rat Nephron by Integrating Single-Cell and Microdissected Tubule Segment Transcriptomes.International journal of molecular sciences · 2024Article
- Gestational Caloric Restriction Alters Adipose Tissue Methylome and Offspring's Metabolic Profile in a Swine Model.International journal of molecular sciences · 2024Article
- Case report: The success of empagliflozin therapy for glycogen storage disease type 1b.Frontiers in endocrinology · 2024Article
- The clinical potential of 1,5-anhydroglucitol as biomarker in diabetes mellitus.Frontiers in endocrinology · 2024Review
- The progress of clinical research on the detection of 1,5-anhydroglucitol in diabetes and its complications.Frontiers in endocrinology · 2024Review
- Treatment of the Neutropenia Associated with GSD1b and G6PC3 Deficiency with SGLT2 Inhibitors.Diagnostics (Basel, Switzerland) · 2023Review
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Authors and funding
6 authors at 1 institution in 1 country.
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Abstract
Neutropenia and neutrophil dysfunction in glycogen storage disease type 1b (GSD1b) and severe congenital neutropenia type 4 (SCN4), associated with deficiencies of the glucose-6-phosphate transporter (G6PT/SLC37A4) and the phosphatase G6PC3, respectively, are the result of the accumulation of 1,5-anhydroglucitol-6-phosphate in neutrophils. This is an inhibitor of hexokinase made from 1,5-anhydroglucitol (1,5-AG), an abundant polyol in blood. 1,5-AG is presumed to be reabsorbed in the kidney by a sodium-dependent-transporter of uncertain identity, possibly SGLT4/SLC5A9 or SGLT5/SLC5A10. Lowering blood 1,5-AG with an SGLT2-inhibitor greatly improved neutrophil counts and function in G6PC3-deficient and GSD1b patients. Yet, this effect is most likely mediated indirectly, through the inhibition of the renal 1,5-AG transporter by glucose, when its concentration rises in the renal tubule following inhibition of SGLT2. To identify the 1,5-AG transporter, both human and mouse SGLT4 and SGLT5 were expressed in HEK293T cells and transport measurements were performed with radiolabelled compounds. We found that SGLT5 is a better carrier for 1,5-AG than for mannose, while the opposite is true for human SGLT4. Heterozygous variants in SGLT5, associated with a low level of blood 1,5-AG in humans cause a 50-100% reduction in 1,5-AG transport activity tested in model cell lines, indicating that SGLT5 is the predominant kidney 1,5-AG transporter. These and other findings led to the conclusion that (1) SGLT5 is the main renal transporter of 1,5-AG; (2) frequent heterozygous mutations (allelic frequency > 1%) in SGLT5 lower blood 1,5-AG, favourably influencing neutropenia in G6PC3 or G6PT deficiency; (3) the effect of SGLT2-inhibitors on blood 1,5-AG level is largely indirect; (4) specific SGLT5-inhibitors would be more efficient to treat these neutropenias than SGLT2-inhibitors.
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