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首页> 外文期刊>Carcinogenesis >CHRNA5 as negative regulator of nicotine signaling in normal and cancer bronchial cells: effects on motility, migration andn p63 expression
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CHRNA5 as negative regulator of nicotine signaling in normal and cancer bronchial cells: effects on motility, migration andn p63 expression

机译:CHRNA5作为正常和癌性支气管细胞中尼古丁信号传导的负调节剂:对运动性,迁移和p63表达的影响

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Genome-wide association studies have linked lung cancer risk with a region of chromosome 15q25.1 containing CHRNA3, CHRNA5 and CHRNB4 encoding α3, α5 and β4 subunits of nicotinic acetylcholine receptors (nAChR), respectively. One of the strongest associations was observed for a non-silent single-nucleotide polymorphism at codon 398 in CHRNA5. Here, we have used pharmacological (antagonists) or genetic (RNA interference) interventions to modulate the activity of CHRNA5 in non-transformed bronchial cells and in lung cancer cell lines. In both cell types, silencing CHRNA5 or inhibiting receptors containing nAChR α5 with α-conotoxin MII exerted a nicotine-like effect, with increased motility and invasiveness in vitro and increasing calcium influx. The effects on motility were enhanced by addition of nicotine but blocked by inhibiting CHRNA7, which encodes the homopentameric receptor α7 subunit. Silencing CHRNA5 also decreased the expression of cell adhesion molecules P120 and ZO-1 in lung cancer cells as well as the expression of DeltaNp63α in squamous cell carcinoma cell lines. These results demonstrate a role for CHRNA5 in modulating adhesion and motility in bronchial cells, as well as in regulating p63, a potential oncogene in squamous cell carcinoma.
机译:全基因组关联研究已将肺癌风险与15q25.1号染色体区域联系起来,该区域分别包含编码烟碱样乙酰胆碱受体(nAChR)的α3,α5和β4亚基的CHRNA3,CHRNA5和CHRNB4。观察到最强的关联之一是CHRNA5中第398位密码子的非沉默单核苷酸多态性。在这里,我们已使用药理(拮抗剂)或遗传(RNA干扰)干预措施来调节CHRNA5在未转化的支气管细胞和肺癌细胞系中的活性。在两种细胞类型中,用α-芋螺毒素MII沉默CHRNA5或含有nAChRα5的抑制性受体都具有尼古丁样作用,在体外具有增加的运动性和侵袭性,并增加钙的内流。尼古丁的添加增强了对运动的影响,但通过抑制编码同五聚体受体α7亚基的CHRNA7阻止了这种运动。沉默CHRNA5还降低了肺癌细胞中细胞粘附分子P120和ZO-1的表达以及鳞状细胞癌细胞系中DeltaNp63α的表达。这些结果证明了CHRNA5在调节支气管细胞的粘附和运动以及调节p63(鳞状细胞癌中潜在的癌基因)中的作用。

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    《Carcinogenesis 》 |2011年第9期| p.1388-1395| 共8页
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