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首页> 外文期刊>The Journal of Experimental Biology >Intracellular pH regulation in unstimulated Calliphora salivary glands is Na+ dependent and requires V-ATPase activity
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Intracellular pH regulation in unstimulated Calliphora salivary glands is Na+ dependent and requires V-ATPase activity

机译:未刺激的Calliphora唾液腺中的细胞内pH调节是Na +依赖性的,需要V-ATPase活性

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Salivary gland cells of the blowfly Calliphora vicina have a vacuolar-type H+-ATPase (V-ATPase) that lies in their apical membrane and energizes the secretion of a KCl-rich primary saliva upon stimulation with serotonin (5-hydroxytryptamine). Whether and to what extent V-ATPase contributes to intracellular pH (pH(i)) regulation in unstimulated gland cells is unknown. We used the fluorescent dye BCECF to study intracellular pH(i) regulation microfluorometrically and show that: (1) under resting conditions, the application of Na+-free physiological saline induces an intracellular alkalinization attributable to the inhibition of the activity of a Na+-dependent glutamate transporter; (2) the maintenance of resting pHi is Na+, Cl-, concanamycin A and DIDS sensitive; (3) recovery from an intracellular acid load is Na+ sensitive and requires V-ATPase activity; (4) the Na+/H+ antiporter is not involved in pHi recovery after a NH4Cl prepulse; and (5) at least one Na+-dependent transporter and the V-ATPase maintain recovery from an intracellular acid load. Thus, under resting conditions, the V-ATPase and at least one Na+-dependent transporter maintain normal pH(i) values of pH.7.5. We have also detected the presence of a Na+-dependent glutamate transporter, which seems to act as an acid loader. Despite this not being a common pH(i)-regulating transporter, its activity affects steady-state pH(i) in C. vicina salivary gland cells.
机译:蝇蝇Calliphora vicina的唾液腺细胞在其顶膜上有液泡型H + -ATPase(V-ATPase),在用5-羟色胺(5-羟色胺)刺激后,可以分泌富含KCl的初级唾液。 V-ATPase是否以及在何种程度上对未刺激的腺细胞中的细胞内pH(pH(i))调节起作用。我们使用荧光染料BCECF进行了微荧光测定,研究了细胞内pH(i)的调节,结果表明:(1)在静止条件下,不含Na +的生理盐水的应用可诱导细胞内碱化,这归因于对Na +依赖性酶活性的抑制。谷氨酸转运蛋白; (2)维持静止的pHi对Na +,Cl-,伴刀豆球蛋白A和DIDS敏感; (3)从细胞内酸负荷中恢复对Na +敏感,并且需要V-ATPase活性; (4)NH4Cl预脉冲后,Na + / H +反向转运蛋白不参与pHi恢复; (5)至少一种Na +依赖性转运蛋白和V-ATP酶维持细胞内酸负荷的恢复。因此,在静止条件下,V-ATP酶和至少一种依赖Na +的转运蛋白维持pH值7.5的正常pH值。我们还检测到了依赖于Na +的谷氨酸转运蛋白的存在,该转运蛋白似乎起着酸性装载剂的作用。尽管这不是一个常见的调节pH(i)的转运蛋白,但它的活性会影响vicina唾液腺唾液腺细胞的稳态pH(i)。

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