NA+/H+ EXCHANGE IS RESPONSIBLE FOR INTRACELLULAR PH REGULATION IN INSULIN-SECRETING HIT-T15 CELLS

被引:13
作者
TREBILCOCK, R
LYNCH, A
TOMLINSON, S
BEST, L
机构
[1] Department of Medicine, University of Manchester, Manchester
关键词
HCO[!sup]-[!/sup][!sub]3[!/sub]/Cl[!sup]-[!/sup] exchange; Insulin-secreting cell; Intracellular pH; Na[!sup]+[!/sup]/H[!sup]+[!/sup; exchange;
D O I
10.1016/0303-7207(90)90070-O
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The addition of glucose to suspensions of HIT-T15 insulinoma cells caused a small, transient acidification followed by a gradual, progressive alkalinisation, as assessed by the fluorescent pH-sensitive dye 2',7'-biscarboxyethyl-5'-(6')-carboxyfluorescein (BCECF). Treatment of cells with acetate or lactate produced an immediate, marked acidification followed by recovery and a subsequent alkalinisation. In contrast, addition of NH4C1 caused a rapid rise in intracellular pH (pHi) and recovery to resting values. In cells where Na+/H+ exchange was inhibited, either with amiloride or by omission of Na+ from the medium, glucose caused a progressive acidification, whilst recovery from acetate- or lactate-induced acidification was prevented. Under sodium-free conditions, recovery from acidification could be initiated by addition of Na+. Inhibition of HCO3-/C1- exchange by pretreatment with 4,4'-diisothiocyanatostilbene 2,2'-disulphonic acid (DIDS), or by omission of HCO3- or Cl- from the medium did not affect any of the changes in pHi elicited by the above agents. It is concluded that the principal mechanism responsible for pHi regulation in HIT-T15 cells is the Na+/H+ antiporter and that the HCO3-/C1- exchange systems make little, if any, contribution. © 1990.
引用
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页码:21 / 25
页数:5
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