PI3 kinase inhibitor PI828 uncouples aminergic GPCRs and Ca2+ mobilization irrespectively of its primary target

IF 2.8 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Polina D. Kotova, Ekaterina A. Dymova, Oleg O. Lyamin, Olga A. Rogachevskaja, Stanislav S. Kolesnikov
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引用次数: 0

Abstract

The phosphoinositide 3-kinase (PI3K) is involved in regulation of multiple intracellular processes. Although the inhibitory analysis is generally employed for validating a physiological role of PI3K, increasing body of evidence suggests that PI3K inhibitors can exhibit PI3K-unrelated activity as well. Here we studied Ca2+ signaling initiated by aminergic agonists in a variety of different cells and analyzed effects of the PI3K inhibitor PI828 on cell responsiveness. It turned out that PI828 inhibited Ca2+ transients elicited by acetylcholine (ACh), histamine, and serotonin, but did not affect Ca2+ responses to norepinephrine and ATP. Another PI3K inhibitor wortmannin negligibly affected Ca2+ signaling initiated by any one of the tested agonists. Using the genetically encoded PIP3 sensor PH(Akt)-Venus, we confirmed that both PI828 and wortmannin effectively inhibited PI3K and ascertained that this kinase negligibly contributed to ACh transduction. These findings suggested that PI828 inhibited Ca2+ responses to aminergic agonists tested, involving an unknown cellular mechanism unrelated to the PI3K inhibition. Complementary physiological experiments provided evidence that PI828 could inhibit Ca2+ signals induced by certain agonists, by acting extracellularly, presumably, through their surface receptors. For the muscarinic M3 receptor, this possibility was verified with molecular docking and molecular dynamics. As demonstrated with these tools, wortmannin could be bound in the extracellular vestibule at the muscarinic M3 receptor but this did not preclude binding of ACh to the M3 receptor followed by its activation. In contrast, PI828 could sterically block the passage of ACh into the allosteric site, preventing activation of the muscarinic M3 receptor.

Abstract Image

PI3 激酶抑制剂 PI828 可解除氨基能 GPCR 与 Ca2+ 调动之间的耦合,而与其主要靶标无关。
磷酸肌酸 3- 激酶(PI3K)参与调节多种细胞内过程。虽然通常采用抑制分析来验证 PI3K 的生理作用,但越来越多的证据表明,PI3K 抑制剂也能表现出与 PI3K 无关的活性。在这里,我们研究了多种不同细胞中由胺类激动剂引发的 Ca2+ 信号传导,并分析了 PI3K 抑制剂 PI828 对细胞反应性的影响。结果发现,PI828 可抑制乙酰胆碱(ACh)、组胺和血清素引起的 Ca2+ 瞬态,但不影响去甲肾上腺素和 ATP 引起的 Ca2+ 反应。另一种 PI3K 抑制剂沃特曼宁对任何一种受试激动剂引发的 Ca2+ 信号转导的影响微乎其微。我们使用基因编码的 PIP3 传感器 PH(Akt)-Venus 证实,PI828 和 wortmannin 都能有效抑制 PI3K,并确定该激酶对 ACh 转导的贡献微乎其微。这些发现表明,PI828 可抑制对所测试的胺能激动剂的 Ca2+ 反应,其中涉及一种与 PI3K 抑制无关的未知细胞机制。补充性生理学实验提供的证据表明,PI828 可通过细胞外作用(可能是通过其表面受体)抑制某些激动剂诱导的 Ca2+ 信号。对于毒蕈碱类 M3 受体,分子对接和分子动力学验证了这种可能性。正如这些工具所证明的那样,沃特曼宁可以与毒蕈碱类 M3 受体的细胞外前庭结合,但这并不排除 ACh 与 M3 受体结合后激活受体的可能性。与此相反,PI828 可立体阻断 ACh 进入异构位点,从而阻止毒蕈碱 M3 受体的激活。
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来源期刊
Biochimica et biophysica acta. General subjects
Biochimica et biophysica acta. General subjects 生物-生化与分子生物学
CiteScore
6.40
自引率
0.00%
发文量
139
审稿时长
30 days
期刊介绍: BBA General Subjects accepts for submission either original, hypothesis-driven studies or reviews covering subjects in biochemistry and biophysics that are considered to have general interest for a wide audience. Manuscripts with interdisciplinary approaches are especially encouraged.
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