Literature DB >> 21486947

Phenotypes of pseudohypoaldosteronism type II caused by the WNK4 D561A missense mutation are dependent on the WNK-OSR1/SPAK kinase cascade.

Motoko Chiga1, Fatema H Rafiqi, Dario R Alessi, Eisei Sohara, Akihito Ohta, Tatemitsu Rai, Sei Sasaki, Shinichi Uchida.   

Abstract

We recently reported increased phosphorylation of the NaCl cotransporter (NCC) in Wnk4(D561A/+) knock-in mice, an ideal model of the human hereditary hypertensive disease pseudohypoaldosteronism type II (PHAII). Although previous in vitro studies had suggested the existence of a phosphorylation cascade involving the WNK, OSR1 and SPAK kinases, whether the WNK-OSR1/SPAK cascade is in fact fully responsible for NCC phosphorylation in vivo and whether the activation of this cascade is the sole mediator of PHAII remained to be determined. To clarify these issues, we mated the Wnk4(D561A/+) knock-in mice with Spak and Osr1 knock-in mice in which the T-loop threonine residues in SPAK and OSR1 (243 and 185, respectively) were mutated to alanine to prevent activation by WNK kinases. We found that NCC phosphorylation was almost completely abolished in Wnk4(D561A/+)Spak(T)(243A/T243A)Osr1(T185A/+) triple knock-in mice, clearly demonstrating that NCC phosphorylation in vivo is dependent on the WNK-OSR1/SPAK cascade. In addition, the high blood pressure, hyperkalemia and metabolic acidosis observed in Wnk4(D561A/+) mice were corrected in the triple knock-in mice. These results clearly establish that PHAII caused by the WNK4 D561A mutation is dependent on the activation of the WNK-OSR1/SPAK-NCC cascade and that the contribution of other mechanisms to PHAII (independent of the WNK-OSR1/SPAK cascade) could be minimal.

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Year:  2011        PMID: 21486947     DOI: 10.1242/jcs.084111

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  29 in total

1.  Effect of heterozygous deletion of WNK1 on the WNK-OSR1/ SPAK-NCC/NKCC1/NKCC2 signal cascade in the kidney and blood vessels.

Authors:  Koichiro Susa; Satomi Kita; Takahiro Iwamoto; Sung-Sen Yang; Shih-Hua Lin; Akihito Ohta; Eisei Sohara; Tatemitsu Rai; Sei Sasaki; Dario R Alessi; Shinichi Uchida
Journal:  Clin Exp Nephrol       Date:  2012-08       Impact factor: 2.801

2.  Sympathetic stimulation of thiazide-sensitive sodium chloride cotransport in the generation of salt-sensitive hypertension.

Authors:  Andrew S Terker; Chao-Ling Yang; James A McCormick; Nicholas P Meermeier; Shaunessy L Rogers; Solveig Grossmann; Katja Trompf; Eric Delpire; Johannes Loffing; David H Ellison
Journal:  Hypertension       Date:  2014-05-05       Impact factor: 10.190

3.  Discovery of Novel SPAK Inhibitors That Block WNK Kinase Signaling to Cation Chloride Transporters.

Authors:  Eriko Kikuchi; Takayasu Mori; Moko Zeniya; Kiyoshi Isobe; Mari Ishigami-Yuasa; Shinya Fujii; Hiroyuki Kagechika; Tomoaki Ishihara; Tohru Mizushima; Sei Sasaki; Eisei Sohara; Tatemitsu Rai; Shinichi Uchida
Journal:  J Am Soc Nephrol       Date:  2014-11-05       Impact factor: 10.121

4.  KLHL3 Knockout Mice Reveal the Physiological Role of KLHL3 and the Pathophysiology of Pseudohypoaldosteronism Type II Caused by Mutant KLHL3.

Authors:  Emi Sasaki; Koichiro Susa; Takayasu Mori; Kiyoshi Isobe; Yuya Araki; Yuichi Inoue; Yuki Yoshizaki; Fumiaki Ando; Yutaro Mori; Shintaro Mandai; Moko Zeniya; Daiei Takahashi; Naohiro Nomura; Tatemitsu Rai; Shinichi Uchida; Eisei Sohara
Journal:  Mol Cell Biol       Date:  2017-03-17       Impact factor: 4.272

Review 5.  The WNK signaling pathway and salt-sensitive hypertension.

Authors:  Taisuke Furusho; Shinichi Uchida; Eisei Sohara
Journal:  Hypertens Res       Date:  2020-04-14       Impact factor: 3.872

Review 6.  Electroneutral absorption of NaCl by the aldosterone-sensitive distal nephron: implication for normal electrolytes homeostasis and blood pressure regulation.

Authors:  Dominique Eladari; Régine Chambrey; Nicolas Picard; Juliette Hadchouel
Journal:  Cell Mol Life Sci       Date:  2014-02-21       Impact factor: 9.261

7.  CUL3 gene analysis enables early intervention for pediatric pseudohypoaldosteronism type II in infancy.

Authors:  Madori Osawa; Yumi Ogura; Kiyoshi Isobe; Shinichi Uchida; Shigeaki Nonoyama; Hiroyuki Kawaguchi
Journal:  Pediatr Nephrol       Date:  2013-05-22       Impact factor: 3.714

8.  Regulation of the renal NaCl cotransporter by the WNK/SPAK pathway: lessons learned from genetically altered animals.

Authors:  Mauricio Ostrosky-Frid; María Castañeda-Bueno; Gerardo Gamba
Journal:  Am J Physiol Renal Physiol       Date:  2018-08-08

Review 9.  Pharmacological targeting of SPAK kinase in disorders of impaired epithelial transport.

Authors:  Jinwei Zhang; Jason K Karimy; Eric Delpire; Kristopher T Kahle
Journal:  Expert Opin Ther Targets       Date:  2017-07-12       Impact factor: 6.902

10.  Decreased KLHL3 expression is involved in the pathogenesis of pseudohypoaldosteronism type II caused by cullin 3 mutation in vivo.

Authors:  Sayaka Yoshida; Yuya Araki; Takayasu Mori; Emi Sasaki; Yuri Kasagi; Kiyoshi Isobe; Koichiro Susa; Yuichi Inoue; Pascale Bomont; Tomokazu Okado; Tatemitsu Rai; Shinichi Uchida; Eisei Sohara
Journal:  Clin Exp Nephrol       Date:  2018-06-05       Impact factor: 2.801

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