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Recording and identification of depolarization-activated current in intercalated cells

SHI Wen-Sen, DING Zheng, SUN Qi, DUAN Xin-Peng, ZHANG Cheng-Biao*

Department of Physiology, Xuzhou Medical University, Xuzhou 221000, China

Abstract

The depolarization-activated current of intercalated cells in the distal nephron was detected for the first time, and the type of ion channel mediating the current was identified based on electrophysiological and pharmacological properties. The whole-cell current of distal nephron in kidney of C57BL/6J mice was recorded by Axon MultiClamp 700B patch-clamp system, and the effects of several K+ channel inhibitors on the depolarization-activated current in intercalated cells were observed. In addition, the immunofluorescence technique was used to investigate the localization of the channel in intercalated cells. The results showed that when K+ concentration of the bath solution was equal to intracellular fluid (140 mmol/L K+), the depolarization-activated current could be recorded in intercalated cells, but this current was not observed in the principal cells. The depolarization-activated current detected in the intercalated cells could be blocked by Kv4.1 inhibitors. The immunofluorescence experiment showed that the fluorescence of Kv4.1 protein was only present in intercalated cells and not observed in principal cells. Kv4.1 protein immunofluorescence was observed in the luminal and basolateral membrane of intercalated cells, but the fluorescence intensity of luminal membrane was higher than that of basolateral membrane. We conclude that the depolarization-activated current detected in intercalated cells is mediated by Kv4.1 and this channel is mainly expressed in the luminal membrane of intercalated cells. 

Key words: kidney; distal nephron; Kv4.1; intercalated cell; H+,K+-ATPase

Received:   Accepted:

Corresponding author: 张成标  E-mail: zhangcbs@sina.com

DOI: 10.13294/j.aps.2024.0010

Citing This Article:

SHI Wen-Sen, DING Zheng, SUN Qi, DUAN Xin-Peng, ZHANG Cheng-Biao. Recording and identification of depolarization-activated current in intercalated cells. Acta Physiol Sin 2024; 76 (1): 52-58 (in Chinese with English abstract).