Literature DB >> 22496409

Enhanced intrarenal receptor-mediated prorenin activation in chronic progressive anti-thymocyte serum nephritis rats on high salt intake.

Yanjie Huang1, Tatsuo Yamamoto, Taro Misaki, Hiroyuki Suzuki, Akashi Togawa, Naro Ohashi, Hirotaka Fukasawa, Yoshihide Fujigaki, Atsuhiro Ichihara, Akira Nishiyama, Takaaki Senbonmatsu, Naoki Ikegaya, Akira Hishida.   

Abstract

Despite suppression of the circulating renin-angiotensin system (RAS), high salt intake (HSI) aggravates kidney injury in chronic kidney disease. To elucidate the effect of HSI on intrarenal RAS, we investigated the levels of intrarenal prorenin, renin, (pro)renin receptor (PRR), receptor-mediated prorenin activation, and ANG II in chronic anti-thymocyte serum (ATS) nephritic rats on HSI. Kidney fibrosis grew more severe in the nephritic rats on HSI than normal salt intake. Despite suppression of plasma renin and ANG II, marked increases in tubular prorenin and renin proteins without concomitant rises in renin mRNA, non-proteolytically activated prorenin, and ANG II were noted in the nephritic rats on HSI. Redistribution of PRR from the cytoplasm to the apical membrane, along with elevated non-proteolytically activated prorenin and ANG II, was observed in the collecting ducts and connecting tubules in the nephritic rats on HSI. Olmesartan decreased cortical prorenin, non-proteolytically activated prorenin and ANG II, and apical membranous PRR in the collecting ducts and connecting tubules, and attenuated the renal lesions. Cell surface trafficking of PRR was enhanced by ANG II and was suppressed by olmesartan in Madin-Darby canine kidney cells. These data suggest the involvement of the ANG II-dependent increase in apical membrane PRR in the augmentation of intrarenal binding of prorenin and renin, followed by nonproteolytic activation of prorenin, enhancement of renin catalytic activity, ANG II generation, and progression of kidney fibrosis in the nephritic rat kidneys on HSI. The origin of the increased tubular prorenin and renin remains to be clarified. Further studies measuring the urinary prorenin and renin are needed.

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Year:  2012        PMID: 22496409     DOI: 10.1152/ajprenal.00275.2011

Source DB:  PubMed          Journal:  Am J Physiol Renal Physiol        ISSN: 1522-1466


  14 in total

1.  Prostaglandin E2 Induces Prorenin-Dependent Activation of (Pro)renin Receptor and Upregulation of Cyclooxygenase-2 in Collecting Duct Cells.

Authors:  Nicolás Salinas-Parra; Cristian Reyes-Martínez; Minolfa C Prieto; Alexis A Gonzalez
Journal:  Am J Med Sci       Date:  2017-05-30       Impact factor: 2.378

Review 2.  Circadian rhythm of blood pressure and the renin-angiotensin system in the kidney.

Authors:  Naro Ohashi; Shinsuke Isobe; Sayaka Ishigaki; Hideo Yasuda
Journal:  Hypertens Res       Date:  2016-12-01       Impact factor: 3.872

3.  Intrarenal renin-angiotensin system activity is augmented after initiation of dialysis.

Authors:  Naro Ohashi; Shinsuke Isobe; Sayaka Ishigaki; Takahisa Suzuki; Masafumi Ono; Tomoyuki Fujikura; Takayuki Tsuji; Akihiko Kato; Seiichiro Ozono; Hideo Yasuda
Journal:  Hypertens Res       Date:  2016-10-20       Impact factor: 3.872

4.  Role of intrarenal (pro)renin receptor in ischemic acute kidney injury in rats.

Authors:  Masafumi Ono; Yukitoshi Sakao; Takayuki Tsuji; Naro Ohashi; Hideo Yasuda; Akira Nishiyama; Yoshihide Fujigaki; Akihiko Kato
Journal:  Clin Exp Nephrol       Date:  2014-05-10       Impact factor: 2.801

5.  Augmented circadian rhythm of the intrarenal renin-angiotensin systems in anti-thymocyte serum nephritis rats.

Authors:  Shinsuke Isobe; Naro Ohashi; Sayaka Ishigaki; Takayuki Tsuji; Yukitoshi Sakao; Akihiko Kato; Hiroaki Miyajima; Yoshihide Fujigaki; Akira Nishiyama; Hideo Yasuda
Journal:  Hypertens Res       Date:  2016-01-07       Impact factor: 3.872

6.  Disturbed circadian rhythm of the intrarenal renin-angiotensin system: relevant to nocturnal hypertension and renal damage.

Authors:  Shinsuke Isobe; Naro Ohashi; Tomoyuki Fujikura; Takayuki Tsuji; Yukitoshi Sakao; Hideo Yasuda; Akihiko Kato; Hiroaki Miyajima; Yoshihide Fujigaki
Journal:  Clin Exp Nephrol       Date:  2014-04-12       Impact factor: 2.801

7.  Melatonin ameliorates intrarenal renin-angiotensin system in a 5/6 nephrectomy rat model.

Authors:  Sayaka Ishigaki; Naro Ohashi; Takashi Matsuyama; Shinsuke Isobe; Naoko Tsuji; Takamasa Iwakura; Tomoyuki Fujikura; Takayuki Tsuji; Akihiko Kato; Hiroaki Miyajima; Hideo Yasuda
Journal:  Clin Exp Nephrol       Date:  2017-11-20       Impact factor: 2.801

8.  Angiotensin-converting enzyme inhibitor does not suppress renal angiotensin II levels in angiotensin I-infused rats.

Authors:  Keisuke Ohnishi; Miki Murase; Daisuke Nakano; Nicolas Pelisch; Hirofumi Hitomi; Hiroyuki Kobori; Satoshi Morimoto; Hirohito Mori; Tsutomu Masaki; Koji Ohmori; Masakazu Kohno; Atsuhiro Ichihara; Akira Nishiyama
Journal:  J Pharmacol Sci       Date:  2013-05-22       Impact factor: 3.337

9.  Renoprotective effects of direct renin inhibition in glomerulonephritis.

Authors:  Kayoko Miyata; Ryousuke Satou; Daisuke Inui; Akemi Katsurada; Dale Seth; Allison Davis; Maki Urushihara; Hiroyuki Kobori; Kenneth D Mitchell; L Gabriel Navar
Journal:  Am J Med Sci       Date:  2014-10       Impact factor: 2.378

10.  NF-κB-dependent upregulation of (pro)renin receptor mediates high-NaCl-induced apoptosis in mouse inner medullary collecting duct cells.

Authors:  Jiahui Su; Xiyang Liu; Chuanming Xu; Xiaohan Lu; Fei Wang; Hui Fang; Aihua Lu; Qixiang Qiu; Chunling Li; Tianxin Yang
Journal:  Am J Physiol Cell Physiol       Date:  2017-10-11       Impact factor: 4.249

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