Tsvetkov D, Shymanets A, Huang Yu, Bucher K, Piekorz R, Hirsch E, Beer-Hammer S, Harteneck C, Gollasch M, Nürnberg B
Charité University Medicine Berlin, Experimental and Clinical Research Center, Section Nephrology/Intensive Care, Berlin, 13125, Germany.
Biochemistry (Mosc). 2016 Jul;81(7):691-9. doi: 10.1134/S0006297916070051.
The intracellular PI3K-AKT-mTOR pathway is involved in regulation of numerous important cell processes including cell growth, differentiation, and metabolism. The PI3Kα isoform has received particular attention as a novel molecular target in gene therapy, since this isoform plays critical roles in tumor progression and tumor blood flow and angiogenesis. However, the role of PI3Kα and other class I isoforms, i.e. PI3Kβ, γ, δ, in the regulation of vascular tone and regional blood flow are largely unknown. We used novel isoform-specific PI3K inhibitors and mice deficient in both PI3Kγ and PI3Kδ (Pik3cg(-/-)/Pik3cd(-/-)) to define the putative contribution of PI3K isoform(s) to arterial vasoconstriction. Wire myography was used to measure isometric contractions of isolated murine mesenteric arterial rings. Phenylephrine-dependent contractions were inhibited by the pan PI3K inhibitors wortmannin (100 nM) and LY294002 (10 µM). These vasoconstrictions were also inhibited by the PI3Kα isoform inhibitors A66 (10 µM) and PI-103 (1 µM), but not by the PI3Kβ isoform inhibitor TGX 221 (100 nM). Pik3cg(-/-)/Pik3cd(-/-)-arteries showed normal vasoconstriction. We conclude that PI3Kα is an important downstream element in vasoconstrictor GPCR signaling, which contributes to arterial vasocontraction via α1-adrenergic receptors. Our results highlight a regulatory role of PI3Kα in the cardiovascular system, which widens the spectrum of gene therapy approaches targeting PI3Kα in cancer cells and tumor angiogenesis and regional blood flow.
细胞内PI3K-AKT-mTOR信号通路参与调控众多重要的细胞过程,包括细胞生长、分化和代谢。PI3Kα亚型作为基因治疗中的一种新型分子靶点受到了特别关注,因为该亚型在肿瘤进展、肿瘤血流和血管生成中起着关键作用。然而,PI3Kα和其他I类亚型,即PI3Kβ、γ、δ在血管张力和局部血流调节中的作用在很大程度上尚不清楚。我们使用新型亚型特异性PI3K抑制剂以及同时缺乏PI3Kγ和PI3Kδ的小鼠(Pik3cg(-/-)/Pik3cd(-/-))来确定PI3K亚型对动脉血管收缩的假定作用。采用线肌张力测定法测量分离的小鼠肠系膜动脉环的等长收缩。苯肾上腺素依赖性收缩受到泛PI3K抑制剂渥曼青霉素(100 nM)和LY294002(10 μM)的抑制。这些血管收缩也受到PI3Kα亚型抑制剂A66(10 μM)和PI-103(μM)的抑制,但不受PI3Kβ亚型抑制剂TGX 221(100 nM)的抑制。Pik3cg(-/-)/Pik3cd(-/-)动脉显示出正常的血管收缩。我们得出结论,PI-3Kα是血管收缩性GPCR信号传导中的一个重要下游元件,它通过α1-肾上腺素能受体促进动脉血管收缩。我们的结果突出了PI3Kα在心血管系统中的调节作用,这拓宽了针对癌细胞、肿瘤血管生成和局部血流中PI3Kα的基因治疗方法的范围。