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首页> 外文期刊>The Journal of general physiology >In Intact Cone Photoreceptors, a Ca2+-dependent, Diffusible Factor Modulates the cGMP-gated Ion Channels Differently than in Rods
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In Intact Cone Photoreceptors, a Ca2+-dependent, Diffusible Factor Modulates the cGMP-gated Ion Channels Differently than in Rods

机译:在完整的圆锥感光细胞中,Ca2 +依赖的可扩散因子与杆中的cGMP门控离子通道调节方式不同

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摘要

We investigated the modulation of cGMP-gated ion channels in single cone photoreceptors isolated from a fish retina. A new method allowed us to record currents from an intact outer segment while controlling its cytoplasmic composition by superfusion of the electropermeabilized inner segment. The sensitivity of the channels to agonists in the intact outer segment differs from that measured in membrane patches detached from the same cell. This sensitivity, measured as the ligand concentration necessary to activate half-maximal currents, K 1/2, also increases as Ca2+ concentration decreases. In electropermeabilized cones, K 1/2 for cGMP is 335.5 ± 64.4 μM in the presence of 20 μM Ca2+, and 84.3 ± 12.6 μM in its absence. For 8Br-cGMP, K 1/2 is 72.7 ± 11.3 μM in the presence of 20 μM Ca2+ and 15.3 ± 4.5 μM in its absence. The Ca2+-dependent change in agonist sensitivity is larger in extent than that measured in rods. In electropermeabilized tiger salamander rods, K 1/2 for 8Br-cGMP is 17.9 ± 3.8 μM in the presence of 20 μM Ca2+ and 7.2 ± 1.2 μM in its absence. The Ca2+-dependent modulation is reversible in intact cone outer segments, but is progressively lost in the absence of divalent cations, suggesting that it is mediated by a diffusible factor. Comparison of data in intact cells and detached membrane fragments from cones indicates that this factor is not calmodulin. At 40 μM 8Br-cGMP, the Ca2+-dependent change in sensitivity in cones is half-maximal at K Ca = 286 ± 66 nM Ca2+. In rods, by contrast, K Ca is ~50 nM Ca2+. The difference in magnitude and Ca2+ dependence of channel modulation between photoreceptor types suggests that this modulation may play a more significant role in the regulation of photocurrent gain in cones than in rods.
机译:我们研究了从鱼视网膜分离出的单锥光感受器中cGMP门控离子通道的调制。一种新方法使我们能够记录完整的外部区段的电流,同时通过电渗透的内部区段的融合来控制其胞质组成。在完整的外部片段中,通道对激动剂的敏感性与从同一细胞分离的膜片中所测量的敏感性不同。该灵敏度(以激活半最大电流所需的配体浓度K 1/2来衡量)随着Ca2 +浓度的降低而增加。在电透锥中,在20μMCa2 +存在下,cGMP的K 1/2为335.5±64.4μM,在不存在的情况下为84.3±12.6μM。对于8Br-cGMP,在存在20μMCa2 +的情况下,K 1/2为72.7±11.3μM,在不存在Ca2 +的情况下,K 1/2为15.3±4.5μM。激动剂敏感性中Ca2 +依赖性变化的程度大于棒中测量的程度。在电透化老虎sal棒中,存在20μMCa2 +时,8Br-cGMP的K 1/2为17.9±3.8μM,不存在时为7.2±1.2μM。 Ca 2 +依赖的调制在​​完整的锥体外部段中是可逆的,但是在不存在二价阳离子的情况下会逐渐丢失,这表明它是由可扩散因子介导的。比较完整细胞和视锥细胞脱离的膜碎片中的数据,表明该因素不是钙调蛋白。在40μM8Br-cGMP处,视锥细胞中Ca2 +依赖性的敏感性变化在K Ca = 286±66 nM Ca2 +时达到最大值的一半。相反,在棒中,K Ca为〜50 nM Ca2 +。感光体类型之间通道调制的大小和Ca2 +依赖性的差异表明,这种调制在锥体中的光电流增益调节中可能比在棒中起更大的作用。

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