Literature DB >> 17928514

Connexins 37 and 40 transduce purinergic signals mediating renal autoregulation.

Tsuneo Takenaka1, Tsutomu Inoue, Yoshihiko Kanno, Hirokazu Okada, Caryl E Hill, Hiromichi Suzuki.   

Abstract

Our previous data indicated that various subtypes of connexin (Cx) were expressed in the juxtaglomerular apparatus. Experiments were performed to characterize the effects on renal autoregulation of specific mimetic peptides that inhibit these Cx subtypes in Wistar-Kyoto rats. Intrarenal infusion of (Cx37,43)GAP27 increased autoregulatory index of renal plasma flow (0.06 +/- 0.05 to 0.47 +/- 0.06, n = 6, P < 0.05) and glomerular filtration rate (GFR; 0.01 +/- 0.07 to 0.49 +/- 0.07, P < 0.05). The additional administration of 8-cyclopentyl- 1,3-dipropylxanthine (CPX) produced a further elevation of autoregulatory index of RPF (0.86 +/- 0.07, P < 0.05) and GFR (0.88 +/- 0.09, P < 0.05), compared with (Cx37,43)GAP27 alone. However, the addition of pyridoxal-phosphate-6-azophenyl-2,4-disulfonic acid (PPADS) to (Cx37,43)GAP27 did not. Combined treatment with CPX and PPADS markedly worsened autoregulatory index of RPF (0.04 +/- 0.10 to 0.81 +/- 0.06, n = 6 P < 0.01) and GFR (0.05 +/- 0.08 to 0.79 +/- 0.05, P < 0.01). (Cx40)GAP27 induced similar changes to (Cx37,43)GAP27. Renal autoregulation was preserved in the presence of (Cx43)GAP26. Our results indicate that the inhibition of gap junction impaired renal autoregulation. Furthermore, the present data provide evidence that both adenosine and purinergic receptors contribute to glomerular autoregulation. Finally, our findings suggest that gap junctions, at least in part, transduce purinergic signals mediating renal autoregulation.

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Year:  2007        PMID: 17928514     DOI: 10.1152/ajpregu.00269.2007

Source DB:  PubMed          Journal:  Am J Physiol Regul Integr Comp Physiol        ISSN: 0363-6119            Impact factor:   3.619


  20 in total

Review 1.  Connexins and the kidney.

Authors:  Fiona Hanner; Charlotte Mehlin Sorensen; Niels-Henrik Holstein-Rathlou; János Peti-Peterdi
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2010-02-17       Impact factor: 3.619

Review 2.  Renal autoregulation in health and disease.

Authors:  Mattias Carlström; Christopher S Wilcox; William J Arendshorst
Journal:  Physiol Rev       Date:  2015-04       Impact factor: 37.312

3.  ATP, P2 receptors and the renal microcirculation.

Authors:  Edward W Inscho
Journal:  Purinergic Signal       Date:  2009-03-18       Impact factor: 3.765

Review 4.  Purinergic signalling in the kidney in health and disease.

Authors:  Geoffrey Burnstock; Louise C Evans; Matthew A Bailey
Journal:  Purinergic Signal       Date:  2013-11-22       Impact factor: 3.765

Review 5.  Adenosine receptors and the kidney.

Authors:  Volker Vallon; Hartmut Osswald
Journal:  Handb Exp Pharmacol       Date:  2009

Review 6.  Functional roles of connexins and pannexins in the kidney.

Authors:  Ahmed B Abed; Panagiotis Kavvadas; Christos E Chadjichristos
Journal:  Cell Mol Life Sci       Date:  2015-06-17       Impact factor: 9.261

7.  Syncytial communication in descending vasa recta includes myoendothelial coupling.

Authors:  Zhong Zhang; Kristie Payne; Thomas L Pallone
Journal:  Am J Physiol Renal Physiol       Date:  2014-04-30

8.  Altered gap junctional communication and renal haemodynamics in Zucker fatty rat model of type 2 diabetes.

Authors:  T Takenaka; T Inoue; H Okada; Y Ohno; T Miyazaki; D J Chaston; C E Hill; H Suzuki
Journal:  Diabetologia       Date:  2011-05-15       Impact factor: 10.122

9.  Direct assessment of tubuloglomerular feedback responsiveness in connexin 40-deficient mice.

Authors:  Mona Oppermann; Isabel Carota; Ina Schiessl; Christoph Eisner; Hayo Castrop; Jurgen Schnermann
Journal:  Am J Physiol Renal Physiol       Date:  2013-02-27

Review 10.  Distribution and functional relevance of connexins in renin-producing cells.

Authors:  Charlotte Wagner; Armin Kurtz
Journal:  Pflugers Arch       Date:  2012-06-29       Impact factor: 3.657

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