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Cyclic nucleotide-gated channels of rat olfactory receptor cells: divalent cations control the sensitivity to cAMP

机译:大鼠嗅觉受体细胞的环核苷酸门控通道:二价阳离子控制对cAMP的敏感性

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摘要

cAMP-gated channels were studied in inside-out membrane patches excised from the apical cellular pole of isolated olfactory receptor cells of the rat. In the absence of divalent cations the dose-response curve of activation of patch current by cAMP had a KM of 4.0 microM at -50 mV and of 2.5 microM at +50 mV. However, addition of 0.2 or 0.5 mM Ca2+ shifted the KM of cAMP reversibly to the higher cAMP concentrations of 33 or 90 microM, respectively, at -50 mV. Among divalent cations, the relative potency for inducing cAMP affinity shifts was: Ca2+ > Sr2+ > Mn2+ > Ba2+ > Mg2+, of which Mg2+ (up to 3 mM) did not shift the KM at all. This potency sequence corresponds closely to that required for the activation of calmodulin. However, the Ca(2+)-sensitivity is lower than expected for a calmodulin-mediated action. Brief (60 s) transient exposure to 3 mM Mg2+, in the absence of other divalent cations, had a protective effect in that following washout of Mg2+, subsequent exposure to 0.2 mM Ca2+ no longer caused affinity shifts. This protection effect did not occur in intact cells and was probably a consequence of patch excision, possibly representing ablation of a regulatory protein from the channel cyclic nucleotide binding site. Thus, the binding of divalent cations, probably via a regulatory protein, controls the sensitivity of the cAMP-gated channels to cAMP. The influx of Ca2+ through these channels during the odorant response may rise to a sufficiently high concentration at the intracellular membrane surface to contribute to the desensitization of the odorant- induced response. The results also indicate that divalent cation effects on cyclic nucleotide-gated channels may depend on the sequence of pre-exposure to other divalent cations.
机译:在从大鼠离体嗅觉受体细胞的顶端细胞极切下的由内而外的膜片中研究了cAMP门控通道。在不存在二价阳离子的情况下,通过cAMP激活贴片电流的剂量反应曲线的KM在-50 mV时为4.0 microM,在+50 mV时为2.5 microM。但是,添加0.2或0.5 mM Ca2 +在-50 mV时可逆地将cAMP的KM分别转变为较高的cAMP浓度,即33或90 microM。在二价阳离子中,诱导cAMP亲和力变化的相对效力为:Ca2 +> Sr2 +> Mn2 +> Ba2 +> Mg2 +,其中Mg2 +(最高3 mM)根本不会移动KM。该效价序列与激活钙调蛋白所需的序列非常接近。但是,Ca(2+)敏感性低于钙调蛋白介导的作用的预期。在不存在其他二价阳离子的情况下,短暂暴露于3 mM Mg2 +的短暂时间(60 s)具有保护作用,即冲洗掉Mg2 +之后,随后暴露于0.2 mM Ca2 +不再引起亲和力变化。这种保护作用在完整细胞中没有发生,可能是膜片切除的结果,可能表示调节蛋白从通道环核苷酸结合位点被切除。因此,二价阳离子的结合可能通过调节蛋白来控制cAMP门控通道对cAMP的敏感性。在增味剂反应期间通过这些通道流入的Ca2 +可能会在细胞内膜表面上升到足够高的浓度,从而导致增味剂诱导的反应脱敏。结果还表明,二价阳离子对环状核苷酸门控通道的影响可能取决于预先暴露于其他二价阳离子的顺序。

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