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Regulation of Cl− secretion by α2-adrenergic receptors in mouse colonic epithelium

机译:小鼠结肠上皮中α2-肾上腺素能受体对Cl-分泌的调节

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摘要

Previous studies have shown that α2 adrenoceptor (α2AR) agonists inhibit electrolyte secretion in colonic epithelia, but little is known about the molecular mechanisms involved in this process. In this study we examined the effect of α2AR activation on transepithelial anion secretion across isolated murine colonic epithelium. We found that α2AR agonists, UK 14,304, clonidine and medetomidine were potent inhibitors of anion secretion, especially in the proximal colon. Short circuit current measurements (Isc) in colonic epithelia from normal and cystic fibrosis (CF) mice showed that α2AR agonists inhibited basal cystic fibrosis transmembrane conductance regulator (CFTR)-mediated Cl secretion but had no effect on CFTR activation by cAMP-dependent phosphorylation. Apical administration of an ionophore, nystatin (90 μg ml−1), was used to investigate the effect of UK 14,304 on basolateral K+ transport. The Na+–K+-ATPase current, measured as ouabain-sensitive current in the absence of ion gradients, was unaltered by pretreatment of the tissue with UK 14,304 (1 μm). In the presence of a basolaterally directed K+ gradient, UK 14,304 significantly reduced nystatin-activated Isc indicating that activation of α2ARs inhibits basolateral K+ channels. Studies with selective K+ channel inhibitors and openers showed that α2AR agonists inhibited KATP channels that were tonically active in mouse colonic epithelia. RT-PCR and pharmacological studies suggested that these channels could be similar to vascular smooth muscle KATP channels comprising Kir6.1/SUR2B or Kir6.2/SUR2B subunits. Inhibition of anion secretion by α2AR agonists required activation of pertussis toxin-sensitive Gi/o proteins, but did not involve classical second messengers, such as cAMP or Ca2+. In summary, α2ARs inhibit anion secretion in colonic epithelia by acting on basolateral KATP channels, through a process that does not involve classical second messengers.
机译:先前的研究表明,α2肾上腺素能受体(α2AR)激动剂可抑制结肠上皮细胞的电解质分泌,但对该过程涉及的分子机制知之甚少。在这项研究中,我们研究了α2AR活化对分离的鼠科结肠上皮细胞跨上皮阴离子分泌的影响。我们发现α2AR激动剂,UK 14,304,可乐定和美托咪定是有效的阴离子分泌抑制剂,尤其是在近端结肠。正常小鼠和囊性纤维化(CF)小鼠结肠上皮的短路电流测量(Isc)显示,α2AR激动剂抑制了基底性囊性纤维化跨膜电导调节剂(CFTR)介导的Cl -分泌,但对其无影响通过cAMP依赖性磷酸化激活CFTR。顶端施用离子载体制霉菌素(制霉菌素)(90μgml -1 )用于研究UK 14,304对基底外侧K + 转运的影响。 Na + –K + -ATPase电流,在不存在离子梯度的情况下,对哇巴因敏感电流测量,通过用UK 14,304(1μm )。在存在基底外侧定向的K + 梯度的情况下,UK 14,304显着降低了制霉菌素激活的Isc,表明α2ARs的激活抑制了基底外侧的K + 通道。对选择性K + 通道抑制剂和开放剂的研究表明,α2AR激动剂可抑制在小鼠结肠上皮中具有调性活性的KATP通道。 RT-PCR和药理研究表明,这些通道可能类似于包含Kir6.1 / SUR2B或Kir6.2 / SUR2B亚基的血管平滑肌KATP通道。 α2AR激动剂抑制阴离子分泌需要激活百日咳毒素敏感的Gi / o蛋白,但不涉及经典的第二信使,例如cAMP或Ca 2 + 。总之,α2ARs通过不涉及经典第二信使的过程,通过作用于基底外侧的KATP通道来抑制结肠上皮中的阴离子分泌。

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