首页> 美国卫生研究院文献>American Journal of Physiology - Lung Cellular and Molecular Physiology >Biomarkers in Lung Diseases: From Pathogenesis to Prediction to New Therapies: Decreased phosphatase PTEN amplifies PI3K signaling and enhances proinflammatory cytokine release in COPD
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Biomarkers in Lung Diseases: From Pathogenesis to Prediction to New Therapies: Decreased phosphatase PTEN amplifies PI3K signaling and enhances proinflammatory cytokine release in COPD

机译:肺部疾病中的生物标记物:从发病机理到预测到新疗法:磷酸酶PTEN的减少会增强PI3K信号传导并增强COPD中促炎性细胞因子的释放

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摘要

The phosphatidylinositol 3-kinase (PI3K) pathway is activated in chronic obstructive pulmonary disease (COPD), but the regulatory mechanisms for this pathway are yet to be elucidated. The aim of this study was to determine the expression and role of phosphatase and tensin homolog deleted from chromosome 10 (PTEN), a negative regulator of the PI3K pathway, in COPD. PTEN protein expression was measured in the peripheral lung of COPD patients compared with smoking and nonsmoking controls. The direct influence of cigarette smoke extract (CSE) on PTEN expression was assessed using primary lung epithelial cells and a cell line (BEAS-2B) in the presence or absence of l-buthionine-sulfoximine (BSO) to deplete intracellular glutathione. The impact of PTEN knockdown by RNA interference on cytokine production was also examined. In peripheral lung, PTEN protein was significantly decreased in patients with COPD compared with the subjects without COPD (P < 0.001) and positively correlated with the severity of airflow obstruction (forced expiratory volume in 1-s percent predicted; r = 0.50; P = 0.0012). Conversely, phosphorylated Akt, as a marker of PI3K activation, showed a negative correlation with PTEN protein levels (r = −0.41; P = 0.0042). In both primary bronchial epithelial cells and BEAS-2B cells, CSE decreased PTEN protein, which was reversed by N-acetyl cysteine treatment. PTEN knockdown potentiated Akt phosphorylation and enhanced production of proinflammatory cytokines, such as IL-6, CXCL8, CCL2, and CCL5. In conclusion, oxidative stress reduces PTEN protein levels, which may result in increased PI3K signaling and amplification of inflammation in COPD.
机译:磷脂酰肌醇3-激酶(PI3K)通路在慢性阻塞性肺疾病(COPD)中被激活,但该通路的调控机制尚待阐明。这项研究的目的是确定在COPD中从PI3K途径的负调控因子10号染色体(PTEN)缺失的磷酸酶和张力蛋白同源物的表达和作用。与吸烟和不吸烟对照组相比,在COPD患者的外周肺中测量了PTEN蛋白表达。在存在或不存在1-丁硫氨酸-亚磺酰亚胺(BSO)消耗细胞内谷胱甘肽的情况下,使用原代肺上皮细胞和细胞系(BEAS-2B)评估了香烟烟雾提取物(CSE)对PTEN表达的直接影响。还检查了RNA干扰对PTEN的抑制作用对细胞因子产生的影响。在COPD患者中,与没有COPD的患者相比,外周肺中的PTEN蛋白显着降低(P <0.001),并且与气流阻塞的严重程度呈正相关(预计呼气量为1-s%; r = 0.50; P = 0.0012)。相反,磷酸化的Akt作为PI3K激活的标志物,与PTEN蛋白水平呈负相关(r = -0.41; P = 0.0042)。在原代支气管上皮细胞和BEAS-2B细胞中,CSE均会降低PTEN蛋白,而N-乙酰半胱氨酸治疗可逆转PTEN蛋白。 PTEN组合式可增强Akt磷酸化并增强促炎细胞因子(如IL-6,CXCL8,CCL2和CCL5)的产生。总之,氧化应激会降低PTEN蛋白水平,这可能导致PI3K信号转导增加以及COPD中炎症的放大。

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