4.8 Article

Salt causes aging-associated hypertension via vascular Wnt5a under Klotho deficiency

Journal

JOURNAL OF CLINICAL INVESTIGATION
Volume 130, Issue 8, Pages 4152-4166

Publisher

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI134431

Keywords

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Funding

  1. Japan Society for the Promotion of Science KAKENHI [18K08028, 15H05788, 15H02538, 18K19533]
  2. Japan Agency for Medical Research and Development-Advanced Research and Development Programs for Medical Innovation (AMED-CREST) [JP16gm0510009]
  3. EA Pharma Co. Ltd.
  4. MSD KK
  5. Asahi Group Holdings Ltd.
  6. Astellas Pharma Inc.
  7. OMRON Healthcare Co. Ltd.
  8. Shionogi Co. Ltd.
  9. Mochida Pharmaceutical Co. Ltd.
  10. Chugai Pharmaceutical Co. Ltd.
  11. Mitsubishi Tanabe Pharma Corp.
  12. Toray Industries Inc.
  13. Nippon Boehringer Ingelheim Co. Ltd.
  14. Grants-in-Aid for Scientific Research [15H02538, 18K19533, 18K08028] Funding Source: KAKEN

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Aging is associated with a high prevalence of hypertension due to elevated susceptibility of BP to dietary salt, but its mechanism is unknown. Serum levels of Klotho, an anti-aging factor, decline with age. We found that high salt (HS) increased BP in aged mice and young heterozygous Klotho-knockout mice and was associated with increased vascular expression of Wnt5a and p-MYPT1, which indicate RhoA activity. Not only the Wnt inhibitor LGK974 and the Wnt5a antagonist BoxS but Klotho supplementation inhibits HS-induced BP elevation, similarly to the Rho kinase inhibitor fasudil, associated with reduced p-MYPT1 expression in both groups of mice. In cultured vascular smooth muscle cells, Wnt5a and angiotensin II (Ang II) increased p-MYPT1 expression but knockdown of Wnt5a with siRNA abolished Ang II-induced upregulation of p-MYPT1, indicating that Wnt5a is indispensable for Ang II-induced Rho/ROCK activation. Notably, Klotho inhibited Wnt5a- and Ang II-induced upregulation of p-MYPT1. Consistently, Klotho supplementation ameliorated HS-induced augmentation of reduced renal blood flow (RBF) response to intra-arterial infusion of Ang II and the thromboxane A(2) analog U46619, which activated RhoA in both groups of mice and were associated with the inhibition of BP elevation, suggesting that abnormal response of RBF to Ang II contributes to HS-induced BP elevation. Thus, Klotho deficiency underlies aging-associated salt-sensitive hypertension through vascular non-canonical Wnt5a/RhoA activation.

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