Literature DB >> 1329533

Insulin activates single amiloride-blockable Na channels in a distal nephron cell line (A6).

Y Marunaka1, N Hagiwara, H Tohda.   

Abstract

Using the patch-clamp technique, we studied the effect of insulin on an amiloride-blockable Na channel in the apical membrane of a distal nephron cell line (A6) cultured on permeable collagen films for 10-14 days. NPo (N, number of channels per patch membrane; Po, average value of open probability of individual channels in the patch) under baseline conditions was 0.88 +/- 0.12 (SE)(n = 17). After making cell-attached patches on the apical membrane which contained Na channels, insulin (1 mU/ml) was applied to the serosal bath. While maintaining the cell-attached patch, NPo significantly increased to 1.48 +/- 0.19 (n = 17; P less than 0.001) after 5-10 min of insulin application. The open probability of Na channels was 0.39 +/- 0.01 (n = 38) under baseline condition, and increased to 0.66 +/- 0.03 (n = 38, P less than 0.001) after addition of insulin. The baseline single-channel conductance was 4pS, and neither the single-channel conductance nor the current-voltage relationship was significantly changed by insulin. These results indicate that insulin increases Na absorption in the distal nephron by increasing the open probability of the amiloride-blockable Na channel.

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Year:  1992        PMID: 1329533     DOI: 10.1152/ajprenal.1992.263.3.F392

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  26 in total

1.  Activation of Na+-permeant cation channel by stretch and cyclic AMP-dependent phosphorylation in renal epithelial A6 cells.

Authors:  Y Marunaka; Y Shintani; G P Downey; N Niisato
Journal:  J Gen Physiol       Date:  1997-09       Impact factor: 4.086

Review 2.  Regulated sodium transport in the renal connecting tubule (CNT) via the epithelial sodium channel (ENaC).

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Journal:  Pflugers Arch       Date:  2009-03-11       Impact factor: 3.657

3.  Na+ homeostasis by epithelial Na+ channel (ENaC) and Nax channel (Nax): cooperation of ENaC and Nax.

Authors:  Yoshinori Marunaka; Rie Marunaka; Hongxin Sun; Toshiro Yamamoto; Narisato Kanamura; Akiyuki Taruno
Journal:  Ann Transl Med       Date:  2016-10

Review 4.  The function and regulation of acid-sensing ion channels (ASICs) and the epithelial Na(+) channel (ENaC): IUPHAR Review 19.

Authors:  Emilie Boscardin; Omar Alijevic; Edith Hummler; Simona Frateschi; Stephan Kellenberger
Journal:  Br J Pharmacol       Date:  2016-08-10       Impact factor: 8.739

Review 5.  Roles of interstitial fluid pH in diabetes mellitus: Glycolysis and mitochondrial function.

Authors:  Yoshinori Marunaka
Journal:  World J Diabetes       Date:  2015-02-15

6.  Cross talk of bumetanide-sensitive and HCO3--dependent transporters activated by IBMX in renal epithelial A6 cells.

Authors:  N Niisato; Y Marunaka
Journal:  J Membr Biol       Date:  1997-05-01       Impact factor: 1.843

7.  Amiloride-sensitive apical membrane sodium channels of everted Ambystoma collecting tubule.

Authors:  L C Stoner; B G Engbretson; S C Viggiano; D J Benos; P R Smith
Journal:  J Membr Biol       Date:  1995-03       Impact factor: 1.843

8.  Effect of insulin on area and Na+ channel density of apical membrane of cultured toad kidney cells.

Authors:  D Erlij; P De Smet; W Van Driessche
Journal:  J Physiol       Date:  1994-12-15       Impact factor: 5.182

Review 9.  Targeting acidity in cancer and diabetes.

Authors:  Robert J Gillies; Christian Pilot; Yoshinori Marunaka; Stefano Fais
Journal:  Biochim Biophys Acta Rev Cancer       Date:  2019-01-30       Impact factor: 10.680

10.  AF17 competes with AF9 for binding to Dot1a to up-regulate transcription of epithelial Na+ channel alpha.

Authors:  Mary Rose Reisenauer; Marc Anderson; Le Huang; Zhijing Zhang; Qiaoling Zhou; Bruce C Kone; Andrew P Morris; Gene D Lesage; Stuart E Dryer; Wenzheng Zhang
Journal:  J Biol Chem       Date:  2009-12-18       Impact factor: 5.157

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