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FOSB–PCDHB13 Axis Disrupts the Microtubule Network in Non-Small Cell Lung Cancer

机译:FOSB–PCDHB13轴破坏了非小细胞肺癌的微管网络

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Non-small cell lung cancer (NSCLC) is among the leading causes of human mortality. One reason for high rates of NSCLC mortality is that drug resistance is a major problem for both conventional chemotherapies and less-toxic targeted therapies. Thus, novel mechanistic insights into disease pathogenesis may benefit the development of urgently needed therapies. Here we show that FBJ murine osteosarcoma viral oncogene homolog B (FOSB) was induced by an antimicrobial peptide, tilapia piscidin-4 (TP4), through the dysregulation of mitochondrial Ca 2+ homeostasis in NSCLC cells. Transcriptomic, chromatin immunoprecipitation quantitative PCR, and immunocytochemical studies reveal that protocadherin-β13 ( PCDHB13 ) as a target of FOSB that was functionally associated with microtubule. Overexpression of either PCDHB13 or FOSB attenuated NSCLC growth and survival in vitro and in vivo. Importantly, downregulation of both FOSB and PCDHB13 was observed in NSCLC patients and was negatively correlated with pathological grade. These findings introduce the FOSB–PCDHB13 axis as a novel tumor suppressive pathway in NSCLC.
机译:非小细胞肺癌(NSCLC)是人类死亡的主要原因。 NSCLC死亡率高的原因之一是耐药性是常规化学疗法和毒性较低的靶向疗法的主要问题。因此,对疾病发病机理的新的机械学见解可能有益于迫切需要的疗法的发展。在这里我们显示,FBJ鼠骨肉瘤病毒致癌基因同源物B(FOSB)是由抗菌肽罗非鱼piscidin-4(TP4)通过线粒体Ca 2+动态平衡在NSCLC细胞中诱导的。转录组学,染色质免疫沉淀定量PCR和免疫细胞化学研究表明,原钙粘蛋白β13(PCDHB13)作为FOSB的靶标,在功能上与微管相关。 PCDHB13或FOSB的过表达减弱了NSCLC在体外和体内的生长和存活。重要的是,在NSCLC患者中观察到FOSB和PCDHB13的下调,并且与病理分级呈负相关。这些发现将FOSB–PCDHB13轴引入了NSCLC中的新型肿瘤抑制途径。

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