首页> 外文期刊>American Journal of Physiology >Activation of class IA PI3K stimulates DNA synthesis in human airway smooth muscle cells.
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Activation of class IA PI3K stimulates DNA synthesis in human airway smooth muscle cells.

机译:IA类PI3K的激活刺激人气道平滑肌细胞中的DNA合成。

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摘要

The precise mechanisms that regulate increases in airway smooth muscle (ASM) mass in asthma are unknown. This study determined whether class IA phosphatidylinositol 3-kinase (PI3K) is sufficient to stimulate DNA synthesis and characterized the PI3K isoforms expressed in human ASM cells. ASM cells express class IA, II, and III PI3K but not class IB. Because thrombin induces ASM cell proliferation, we investigated whether thrombin can stimulate class IA PI3K. Transient transfection of ASM cells with hemagglutinin-tagged p85 PI3K followed by immunostaining revealed that in quiescent cells, p85 was expressed diffusely in the cytoplasm and after stimulation with thrombin p85 translocated to the cell membrane. Microinjection of ASM cells with a dominant negative class IA PI3K inhibited thrombin-induced DNA synthesis by 30% and epidermal growth factor (EGF)- or serum-induced DNA synthesis by 13 and 28%, respectively (P < 0.05 by chi(2) analysis). In parallel experiments, transfection or microinjection of cells with constitutively active PI3K markedly increased DNA synthesis in transfected cells 10.5-fold and in microinjected cells 12.7-fold (P < 0.05 by chi(2) analysis) compared with cells transfected or microinjected with control plasmid. Interestingly, constitutively active PI3K augmented EGF-induced DNA synthesis but had little effect on that induced by serum or thrombin in ASM cells. Collectively, these data suggest that class IA PI3K is activated by thrombin and is sufficient to induce ASM cell growth.
机译:调节哮喘中气道平滑肌(ASM)质量增加的确切机制尚不清楚。这项研究确定了IA类磷脂酰肌醇3-激酶(PI3K)是否足以刺激DNA合成,并鉴定了在人ASM细胞中表达的PI3K亚型。 ASM细胞表达IA,II和III类PI3K,但不表达IB类。因为凝血酶诱导ASM细胞增殖,所以我们研究了凝血酶是否可以刺激IA PI3K类。用血凝素标记的p85 PI3K瞬时转染ASM细胞,然后进行免疫染色,发现在静止细胞中,p85在细胞质中扩散表达,并在凝血酶p85刺激后转移到细胞膜。微量注射具有显性IA PI3K阴性阴性的ASM细胞分别将凝血酶诱导的DNA合成抑制30%,将表皮生长因子(EGF)或血清诱导的DNA合成抑制分别抑制13%和28%(chi(2)P <0.05分析)。在平行实验中,与用对照质粒转染或显微注射的细胞相比,具有组成型活性PI3K的细胞的转染或显微注射显着提高了转染细胞的DNA合成10.5倍和显微注射细胞的DNA合成12.7倍(按chi(2)分析,P <0.05) 。有趣的是,组成型活性PI3K增强了EGF诱导的DNA合成,但对ASM细胞中血清或凝血酶诱导的合成几乎没有影响。总体而言,这些数据表明IA类PI3K被凝血酶激活,足以诱导ASM细胞生长。

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