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AMP-activated protein kinase inhibits alkaline pH- and PKA-induced apical vacuolar H+-ATPase accumulation in epididymal clear cells

机译:AMP激活的蛋白激酶抑制附睾透明细胞中碱性pH和PKA诱导的顶端液泡H + -ATPase积累

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摘要

Acidic luminal pH and low [HCO3−] maintain sperm quiescent during maturation in the epididymis. The vacuolar H+-ATPase (V-ATPase) in clear cells is a major contributor to epididymal luminal acidification. We have shown previously that protein kinase A (PKA), acting downstream of soluble adenylyl cyclase stimulation by alkaline luminal pH or HCO3−, induces V-ATPase apical membrane accumulation in clear cells. Here we examined whether the metabolic sensor AMP-activated protein kinase (AMPK) regulates this PKA-induced V-ATPase apical membrane accumulation. Immunofluorescence labeling of rat and non-human primate epididymides revealed specific AMPK expression in epithelial cells. Immunofluorescence labeling of rat epididymis showed that perfusion in vivo with the AMPK activators 5-aminoimidazole-4-carboxamide-1-β-d-ribofuranoside (AICAR) or A-769662 induced a redistribution of the V-ATPase into subapical vesicles, even in the presence of a luminal alkaline (pH 7.8) buffer compared with that of controls perfused without drug. Moreover, preperfusion with AICAR blocked the PKA-mediated V-ATPase translocation to clear cell apical membranes induced by N6-monobutyryl-cAMP (6-MB-cAMP). Purified PKA and AMPK both phosphorylated V-ATPase A subunit in vitro. In HEK-293 cells [32P]orthophosphate in vivo labeling of the A subunit increased following PKA stimulation and decreased following RNA interference-mediated knockdown of AMPK. Finally, the extent of PKA-dependent in vivo phosphorylation of the A subunit increased with AMPK knockdown. In summary, our findings suggest that AMPK inhibits PKA-mediated V-ATPase apical accumulation in epididymal clear cells, that both kinases directly phosphorylate the V-ATPase A subunit in vitro and in vivo, and that AMPK inhibits PKA-dependent phosphorylation of this subunit. V-ATPase activity may be coupled to the sensing of acid-base status via PKA and to metabolic status via AMPK.
机译:酸性管腔pH和低[HCO3-]使附睾成熟期间精子保持静止。透明细胞中的液泡H + -ATPase(V-ATPase)是附睾管腔酸化的主要因素。先前我们已经证明,蛋白激酶A(PKA)在碱性腔内pH或HCO3-的作用下,在可溶性腺苷酸环化酶的下游起作用,在透明细胞中诱导V-ATPase顶膜积累。在这里,我们检查了代谢传感器AMP激活的蛋白激酶(AMPK)是否调节此PKA诱导的V-ATPase顶膜积累。大鼠和非人类灵长类动物附睾的免疫荧光标记显示上皮细胞中特定的AMPK表达。大鼠附睾的免疫荧光标记显示,使用AMPK激活剂5-氨基咪唑-4-羧酰胺-1-β-d-呋喃核糖苷(AICAR)或A-769662进行体内灌注可诱导V-ATPase重新分布到根尖小泡中,即使在与未注入药物的对照组相比,存在腔内碱性(pH 7.8)缓冲液。此外,用AICAR的预灌流阻断了PKA介导的V-ATPase易位,以清除由N6-单丁酰-cAMP(6-MB-cAMP)诱导的细胞顶膜。纯化的PKA和AMPK都在体外磷酸化了V-ATPase A亚基。在HEK-293细胞中,[32P]正磷酸酯的体内亚基标记在PKA刺激后增加,在RNA干扰介导的AMPK敲低后降低。最后,随着AMPK的敲低,A亚基的PKA依赖性体内磷酸化程度增加。总而言之,我们的研究结果表明,AMPK抑制附睾透明细胞中PKA介导的V-ATPase顶端积累,两种激酶在体内外均直接磷酸化V-ATPase A亚基,并且AMPK抑制该亚基的PKA依赖性磷酸化。 V-ATPase活性可以通过PKA耦合到酸碱状态的检测,并通过AMPK耦合到代谢状态。

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