The bone-derived hormone fibroblast growth factor-23 (FGF-23) activates complexes composed of FGF receptors (FGFRs), including FGFR1, and -Klotho in the kidney distal tubule (DT), leading to increased sodium retention and hypertension. However, the role of FGFR1 in regulating renal processes linked to hypertension is unclear. Here, we investigated the effects of selective FGFR1 loss in the DT. Conditional knockout (cKO) of in the DT ( mice) resulted in left ventricular hypertrophy (LVH) and decreased kidney expression of -Klotho in association with enhanced BP, decreased expression of angiotensin converting enzyme 2, and increased expression of the Na-K-2Cl cotransporter. Notably, recombinant FGF-23 administration similarly decreased the kidney expression of -Klotho and induced LVH in mice. Pharmacologic activation of FGFR1 with a monoclonal anti-FGFR1 antibody (R1MAb1) normalized BP and significantly attenuated LVH in the mouse model of excess FGF-23, but did not induce a response in mice. The hearts of mice showed increased expression of the transient receptor potential cation channel, subfamily C, member 6 (TRPC6), consistent with cardiac effects of soluble Klotho deficiency. Moreover, administration of recombinant soluble Klotho lowered BP in the mice. Thus, FGFR1 in the DT regulates systemic hemodynamic responses opposite to those predicted by the actions of FGF-23. These cardiovascular effects appear to be mediated by paracrine FGF control of kidney FGFR1 and subsequent regulation of soluble Klotho and TRPC6. FGFR1 in the kidney may provide a new molecular target for treating hypertension.
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http://dx.doi.org/10.1681/ASN.2017040412 | DOI Listing |
Sao Paulo Med J
January 2025
Associate Professor, Department of Nephrology, Ankara Bilkent City Hospital, Ankara, Turkey.
Background: Insulin resistance often occurs in patients with chronic kidney disease (CKD) owing to mineral and bone metabolism disorders. Fibroblast growth factor (FGF)-23 and soluble klotho (s-KL) play crucial roles in linking CKD with mineral and bone metabolism.
Objective: This study aimed to examine the relationship between insulin resistance and FGF-23 and s-KL in patients with non-diabetic pre-dialysis patients with CKD.
BMC Nephrol
January 2025
Department of Nephrology, Southern University of Science and Technology Hospital, Shenzhen, China.
Background: Calcification of the radial artery is one of the main causes of anastomotic stenosis in autogenous arteriovenous fistulas in uremic patients. However, the pathogenesis of calcification is still unknown. This study attempted to screen and validate the risk factors for vascular calcification in patients with uremia.
View Article and Find Full Text PDFInt J Mol Sci
January 2025
Institute of Immunology, Faculty of Medicine, Comenius University Bratislava, 813 72 Bratislava, Slovakia.
Gliomas are the most common and lethal forms of malignant brain tumors. We attempted to identify the role of the aging-suppressor gene and Klotho protein in the immunopathogenesis of gliomas. We examined genetic variants by PCR-RFLP and measured serum Klotho levels using the ELISA method.
View Article and Find Full Text PDFFEBS Lett
January 2025
Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, TX, USA.
Soluble, circulating Klotho (sKlotho) is essential for normal health and renal function. sKlotho is shed from the renal distal convoluted tubule (DCT), its primary source, via enzymatic cleavage. However, the physiologic mechanisms that control sKlotho production, trafficking, and shedding are not fully defined.
View Article and Find Full Text PDFSci Rep
January 2025
Department of Internal Medicine, University of Iowa Carver College of Medicine, Iowa City, IA, 52242, USA.
α-Klotho (KLA) is a type-1 membranous protein that can associate with fibroblast growth factor receptor (FGFR) to form co-receptor for FGF23. The ectodomain of unassociated KLA is shed as soluble KLA (sKLA) to exert FGFR/FGF23-independent pleiotropic functions. The previously determined X-ray crystal structure of the extracellular region of sKLA in complex with FGF23 and FGFR1c suggests that sKLA functions solely as an on-demand coreceptor for FGF23.
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