4.3 Article

Na+/H+ and Na+/NH4+ exchange activities of zebrafish NHE3b expressed in Xenopus oocytes

出版社

AMER PHYSIOLOGICAL SOC
DOI: 10.1152/ajpregu.00363.2013

关键词

Na+/H+ exchange; Na+/NH4+ exchange; NHE3; zebrafish; Xenopus oocyte electrophysiology; ammonium; intracellular pH

资金

  1. Ministry of Education, Culture, Sports, Science and Technology of Japan (MEXT) [18059010, 22370029, 25650114]
  2. 21st Century and Global Center of Excellence Program of MEXT
  3. NIH [EY017732, DK083007, DK092408]
  4. Grants-in-Aid for Scientific Research [25650114, 22370029] Funding Source: KAKEN

向作者/读者索取更多资源

Zebrafish Na+/H+ exchanger 3b (zNHE3b) is highly expressed in the apical membrane of ionocytes where Na+ is absorbed from ion-poor fresh water against a concentration gradient. Much in vivo data indicated that zNHE3b is involved in Na+ absorption but not leakage. However, zNHE3b-mediated Na+ absorption has not been thermodynamically explained, and zNHE3b activity has not been measured. To address this issue, we overexpressed zNHE3b in Xenopus oocytes and characterized its activity by electrophysiology. Exposure of zNHE3b oocytes to Na+-free media resulted in significant decrease in intracellular pH (pH(i)) and intracellular Na+ activity (aNa(i)). aNa(i) increased significantly when the cytoplasm was acidified by media containing CO2-HCO3-or butyrate. Activity of zNHE3b was inhibited by amiloride or 5-ethylisopropyl amiloride (EIPA). Although the activity was accompanied by a large hyperpolarization of similar to 50 mV, voltage-clamp experiments showed that Na+/H+ exchange activity of zNHE3b is electroneutral. Exposure of zNHE3b oocytes to medium containing NH3/NH4+ resulted in significant decreases in pH(i) and aNa(i) and significant increase in intracellular NH4+ activity, indicating that zNHE3b mediates the Na+/NH4+ exchange. In low-Na+ (0.5 mM) media, zNHE3b oocytes maintained aNa(i) of 1.3 mM, and Na+-influx was observed when pH(i) was decreased by media containing CO2-HCO3- or butyrate. These results provide thermodynamic evidence that zNHE3b mediates Na+ absorption from ion-poor fresh water by its Na+/H+ and Na+/NH4+ exchange activities.

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