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Alkaline pH- and cAMP-induced V-ATPase membrane accumulation is mediated by protein kinase A in epididymal clear cells

机译:附睾透明细胞中蛋白激酶A介导碱性pH和cAMP诱导的V-ATPase膜积累

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摘要

In the epididymis, low luminal bicarbonate and acidic pH maintain sperm quiescent during maturation and storage. The vacuolar H+-ATPase (V-ATPase) in epididymal clear cells plays a major role in luminal acidification. We have shown previously that cAMP, luminal alkaline pH, and activation of the bicarbonate-regulated soluble adenylyl cyclase (sAC) induce V-ATPase apical accumulation in these cells, thereby stimulating proton secretion into the epididymal lumen. Here we examined whether protein kinase A (PKA) is involved in this response. Confocal immunofluorescence labeling on rat epididymis perfused in vivo showed that at luminal acidic pH (6.5), V-ATPase was distributed between short apical microvilli and subapical endosomes. The specific PKA activator N6-monobutyryl-3′-5′-cyclic monophosphate (6-MB-cAMP, 1 mM) induced elongation of apical microvilli and accumulation of V-ATPase in these structures. The PKA inhibitor myristoylated-PKI (mPKI, 10 µM) inhibited the apical accumulation of V-ATPase induced by 6-MB-cAMP. Perfusion at pH 6.5 with 8-(4-chlorophenylthio)-2-O-methyl-cAMP (8CPT-2-O-Me-cAMP; 10 µM), an activator of the exchange protein activated by cAMP (Epac), did not induce V-ATPase apical accumulation. When applied at a higher concentration (100 µM), 8CPT-2-O-Me-cAMP induced V-ATPase apical accumulation, but this effect was completely inhibited by mPKI, suggesting crossover effects on the PKA pathway with this compound at high concentrations. Importantly, the physiologically relevant alkaline pH-induced apical V-ATPase accumulation was completely inhibited by pretreatment with mPKI. We conclude that direct stimulation of PKA activity by cAMP is necessary and sufficient for the alkaline pH-induced accumulation of V-ATPase in clear cell apical microvilli.
机译:在附睾中,低碳酸氢根离子和酸性pH值使精子在成熟和储存过程中保持静止。附睾透明细胞中的液泡H + -ATPase(V-ATPase)在管腔酸化中起主要作用。先前我们已经表明,cAMP,管腔碱性pH值和碳酸氢盐调节的可溶性腺苷酸环化酶(sAC)的激活在这些细胞中诱导V-ATPase顶端积累,从而刺激质子分泌到附睾腔中。在这里,我们检查了蛋白激酶A(PKA)是否参与此反应。体内灌注大鼠附睾的共聚焦免疫荧光标记显示,在管腔酸性pH(6.5)下,V-ATPase分布在短根尖微绒毛和根尖内体之间。特定的PKA活化剂N 6 -单丁酰基-3'-5'-环单磷酸酯(6-MB-cAMP,1 mM)诱导了这些结构中根尖微绒毛的伸长和V-ATPase的积累。 PKA抑制剂肉豆蔻酰化PKI(mPKI,10 µM)抑制了6-MB-cAMP诱导的V-ATPase的顶端积累。在pH 6.5下,未通过cAMP(Epac)激活的交换蛋白激活剂8-(4-氯苯硫基)-2-O-甲基-cAMP(8CPT-2-O-Me-cAMP; 10 µM)进行灌注。诱导V-ATPase顶端积累。当以更高的浓度(100 µM)施用时,8CPT-2-O-Me-cAMP会诱导V-ATPase顶端积累,但这种作用被mPKI完全抑制,表明该化合物在高浓度下对PKA途径有交叉效应。重要的是,通过mPKI预处理可以完全抑制生理相关的碱性pH诱导的顶端V-ATPase的积累。我们得出结论,由cAMP直接刺激PKA活性对于在透明细胞根尖微绒毛中碱性pH诱导的V-ATPase积累是必要和充分的。

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