首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Regulation of heterologously expressed transient receptor potential-like channels by calcium ions.
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Regulation of heterologously expressed transient receptor potential-like channels by calcium ions.

机译:钙离子调节异源表达的瞬时受体电位样通道。

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摘要

The Drosophila melanogaster gene product TRPL (transient receptor potential-like) is a Ca2+-permeable cation channel that contributes to the light-induced Ca2+ entry in Drosophila photoreceptors and bears homology to several recently cloned mammalian channels. Intracellular Ca2+ has been implicated to stimulate TRPL channels. This constitutes a potentially dangerous mechanism that may lead to Ca2+ overload. Therefore, we studied whether TRPL channels, like other Ca2+-permeable channels, are inhibited by intracellular Ca2+ concentrations in the micromolar range and whether this effect is mediated by calmodulin. In Sf9 cells expressing the TRPL gene along with histamine H1 receptors after infection with baculoviruses containing the corresponding complementary DNA, histamine-induced TRPL currents were inhibited by intracellular Ca2+ with an IC50 of 2.3 microM. Moreover, TRPL currents were reversibly attenuated by a preceding hyperpolarization. This attenuation reflected the action of an increased Ca2+ influx, since it was abolished in the absence of extracellular Ca2+ and enhanced by raising extracellular Ca2+ to 20 mM. Finally, the activity of TRPL channels in inside-out patches was reversibly inhibited by raising the Ca2+ concentration on the cytosolic side of the patches to 10-50 microM. Addition of calmodulin or the calmodulin inhibitor calmidazolium did not modify the inhibition of the TRPL by Ca2+. We conclude that high intracellular Ca2+ concentrations inhibit the TRPL, but no evidence was found for the requirement of calmodulin. This mechanism makes Ca2+ influx through the TRPL self-limiting. Furthermore, the TRPL may allow one to study the structural requirements for channel regulation by Ca2+.
机译:果蝇果蝇基因产物TRPL(类似瞬时受体电位)是Ca2 +可渗透的阳离子通道,有助于光诱导果蝇感光细胞中的Ca2 +进入,并与几个最近克隆的哺乳动物通道具有同源性。细胞内Ca 2+被认为刺激TRPL通道。这构成了可能导致Ca2 +超载的潜在危险机制。因此,我们研究了TRPL通道是否像其他Ca2 +渗透通道一样,被微摩尔范围内的细胞内Ca2 +浓度抑制,并且这种作用是否由钙调蛋白介导。在感染含有相应互补DNA的杆状病毒后,表达TRPL基因和组胺H1受体的Sf9细胞中,组胺诱导的TRPL电流被细胞内Ca2 +抑制,IC50为2.3 microM。此外,TRPL电流被先前的超极化可逆地衰减。这种衰减反映了Ca2 +流入量增加的作用,因为它在不存在细胞外Ca2 +的情况下被取消,并通过将细胞外Ca2 +升高至20 mM而增强。最后,通过将补片的胞质侧上的Ca2 +浓度提高到10-50 microM,可逆地抑制了由内而外的补片中TRPL通道的活性。钙调蛋白或钙调蛋白抑制剂Calidazolium的添加不会改变Ca2 +对TRPL的抑制作用。我们得出的结论是,高细胞内Ca2 +浓度会抑制TRPL,但未发现钙调蛋白需求的证据。这种机制使Ca2 +通过TRPL自限流入。此外,TRPL可能允许人们研究Ca2 +调节通道的结构要求。

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