瞬时受体电位褪黑抑素3是一个依赖于磷酸肌醇的离子通道。

Doreen Badheka, Istvan Borbiro, Tibor Rohacs
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引用次数: 55

摘要

磷酸肌苷是功能多样的瞬时受体电位(TRP)离子通道家族的一般调节剂。磷脂酰肌醇4,5-二磷酸(PI(4,5)P2)已被报道积极调节许多TRP通道,但在一些情况下,磷脂肌醇的调节是有争议的。TRP美拉他汀3 (TRPM3)是一种热激活离子通道,也可被化学激动剂刺激,如孕烯醇酮硫酸盐。在这里,我们使用了多种方法来确定磷酸肌苷对TRPM3的影响。我们发现,在切除的内向外斑块中,通道活性随着时间的推移而下降(下降),这是PI(4,5) p2依赖通道的一个属性。应用合成二辛烷酰(diC8)或天然花生四烯酰基硬脂酰(AASt) PI(4,5)P2可以恢复通道活性。PI(4,5)P2前体磷脂酰肌醇4-磷酸(PI(4)P)在恢复通道活性方面效果较差。两种不同的磷脂酰肌醇激酶抑制剂或磷脂酰肌醇特异性磷脂酶C (PI-PLC)酶预处理均可抑制MgATP对TRPM3电流的恢复,表明MgATP通过生成磷脂酰肌醇起作用。在完整细胞中,通过化学诱导的磷酸肌苷磷酸酶或电压敏感的5'-磷酸酶降低PI(4,5)P2水平可抑制通道活性。通过毒蕈碱受体激活PLC也抑制TRPM3通道活性。总的来说,我们的数据表明TRPM3是一个依赖于磷酸肌醇的离子通道,PI(4,5)P2丰度的降低限制了它的活性。由于TRPM家族的所有其他成员也被证明需要PI(4,5)P2才能发挥活性,因此我们的数据确定PI(4,5)P2是该离子通道亚家族的一般正辅因子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Transient receptor potential melastatin 3 is a phosphoinositide-dependent ion channel.

Transient receptor potential melastatin 3 is a phosphoinositide-dependent ion channel.

Transient receptor potential melastatin 3 is a phosphoinositide-dependent ion channel.

Transient receptor potential melastatin 3 is a phosphoinositide-dependent ion channel.

Phosphoinositides are emerging as general regulators of the functionally diverse transient receptor potential (TRP) ion channel family. Phosphatidylinositol 4,5-bisphosphate (PI(4,5)P2) has been reported to positively regulate many TRP channels, but in several cases phosphoinositide regulation is controversial. TRP melastatin 3 (TRPM3) is a heat-activated ion channel that is also stimulated by chemical agonists, such as pregnenolone sulfate. Here, we used a wide array of approaches to determine the effects of phosphoinositides on TRPM3. We found that channel activity in excised inside-out patches decreased over time (rundown), an attribute of PI(4,5)P2-dependent ion channels. Channel activity could be restored by application of either synthetic dioctanoyl (diC8) or natural arachidonyl stearyl (AASt) PI(4,5)P2. The PI(4,5)P2 precursor phosphatidylinositol 4-phosphate (PI(4)P) was less effective at restoring channel activity. TRPM3 currents were also restored by MgATP, an effect which was inhibited by two different phosphatidylinositol 4-kinase inhibitors, or by pretreatment with a phosphatidylinositol-specific phospholipase C (PI-PLC) enzyme, indicating that MgATP acted by generating phosphoinositides. In intact cells, reduction of PI(4,5)P2 levels by chemically inducible phosphoinositide phosphatases or a voltage-sensitive 5'-phosphatase inhibited channel activity. Activation of PLC via muscarinic receptors also inhibited TRPM3 channel activity. Overall, our data indicate that TRPM3 is a phosphoinositide-dependent ion channel and that decreasing PI(4,5)P2 abundance limits its activity. As all other members of the TRPM family have also been shown to require PI(4,5)P2 for activity, our data establish PI(4,5)P2 as a general positive cofactor of this ion channel subfamily.

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