Endothelial FGFR1 (Fibroblast Growth Factor Receptor 1) Deficiency Contributes Differential Fibrogenic Effects in Kidney and Heart of Diabetic Mice

Author:

Li Jinpeng12,Liu Haijie1,Srivastava Swayam Prakash134ORCID,Hu Qiongying1,Gao Rongfen1,Li Shaolan1,Kitada Munehiro15ORCID,Wu Gaosong2,Koya Daisuke15,Kanasaki Keizo156ORCID

Affiliation:

1. From the Department of Diabetology & Endocrinology (J.L., H.L., S.P.S., Q.H., R.G., S., M.K., D.K., K.K.), Kanazawa Medical University, Uchinada, Ishikawa, Japan

2. Department of Thyroid and Breast Surgery, Wuhan University Zhongnan Hospital, PR China (J.L., G.W.)

3. Department of Pediatrics Yale University School of Medicine, New Haven, CT (S.P.S.)

4. Vascular Biology and Therapeutics Program, Yale University School of Medicine New Haven, CT (S.P.S.).

5. Division of Anticipatory Molecular Food Science and Technology, Medical Research Institute (M.K., D.K., K.K.), Kanazawa Medical University, Uchinada, Ishikawa, Japan

6. Department of Internal Medicine 1, Faculty of Medicine, Shimane University, Japan (K.K.)

Abstract

Endothelial-to-mesenchymal transition (EndMT) has been shown to contribute to organ fibrogenesis. We have reported that N-acetyl-seryl-aspartyl- lysyl-proline (AcSDKP) restored levels of diabetes mellitus-suppressed FGFR1 (fibroblast growth factor receptor 1), the endothelial receptor essential for combating EndMT. However, the molecular regulation and biological/pathological significance of the AcSDKP-FGFR1 relationship has not been elucidated yet. Here, we demonstrated that endothelial FGFR1 deficiency led to AcSDKP-resistant EndMT and severe fibrosis associated with EndMT-stimulated fibrogenic programming in neighboring cells. Diabetes mellitus induced severe kidney fibrosis in endothelial FGFR1-deficient mice ( FGFR1 fl/fl ; VE-cadherin-Cre: FGFR1 EKO ) but not in control mice (FGFR1 fl/fl ); AcSDKP completely or partially suppressed kidney fibrosis in control or FGFR1 EKO mice. Severe fibrosis was also induced in hearts of diabetic FGFR1 EKO mice; however, AcSDKP had no effect on heart fibrosis in FGFR1 EKO mice. AcSDKP also had no effect on EndMT in either kidney or heart but partially suppressed epithelial-to-mesenchymal transition in kidneys of diabetic FGFR1 EKO mice. The medium from FGFR1-deficient endothelial cells stimulated TGFβ (transforming growth factor β)/Smad-dependent epithelial-to-mesenchymal transition in cultured human proximal tubule epithelial cell line, AcSDKP inhibited such epithelial-to-mesenchymal transition. These data demonstrated that endothelial FGFR1 is essential as an antifibrotic core molecule as the target of AcSDKP.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Internal Medicine

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