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PCNA-associated factor KIAA0101 transcriptionally induced by ELK1 controls cell proliferation and apoptosis in nasopharyngeal carcinoma: an integrated bioinformatics and experimental study

机译:ELK1转录诱导的PCNA相关因子KIAA0101控制鼻咽癌细胞的增殖和凋亡:整合的生物信息学和实验研究

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摘要

KIAA0101, previously identified as PCNA-associated factor, is overexpressed among almost majority of human cancers and has emerged as an important regulator of cancer progression; however, its function in human nasopharyngeal carcinoma (NPC) remain unknown. Integrated bioinformatics approaches were employed to determine the KIAA0101 expressions in the NPC samples. Lentiviral vectors carrying KIAA0101 shRNA were constructed and stable transfected cells were validated by qRT-PCR and western blot. Cellular functions were then evaluated by MTT, colony formation, Brdu staining, and flow cytometry. Mechanistic studies were systematically investigated by UCSC Genome Browser, GEO, UALCAN, QIAGEN, PROMO and JASPAR, ChIP, and the cBioPortal, et al. The results showed that KIAA0101 ranked top overexpressed gene lists in dataset. KIAA0101 was highly expressed in NPC tissues and cell lines. Furthermore, knockdown of KIAA0101 significantly inhibited cell proliferation and DNA replication, promoted apoptosis and cell cycle arrest in vitro. Meanwhile, the mechanistic study revealed that MAP kinase phosphorylation-dependent activation of ELK1 may enhance neighbor gene expressions of KIAA0101 and TRIP4 by binding both promotor regions in the NPC cells. Taken together, our findings indicate that overexpression of KIAA0101 activated by MAP kinase phosphorylation-dependent activation of ELK1 may play an important role in NPC progression.
机译:先前被确定为PCNA相关因子的KIAA0101在几乎大多数人类癌症中都过表达,并已成为癌症进展的重要调节剂。然而,其在人鼻咽癌(NPC)中的功能仍然未知。使用整合的生物信息学方法来确定NPC样品中的KIAA0101表达。构建了带有KIAA0101 shRNA的慢病毒载体,并通过qRT-PCR和western blot验证了稳定转染的细胞。然后通过MTT,集落形成,Brdu染色和流式细胞术评估细胞功能。机制研究由UCSC Genome Browser,GEO,UALCAN,QIAGEN,PROMO和JASPAR,ChIP和cBioPortal等进行了系统研究。结果表明,KIAA0101在数据集中的过表达基因列表中排名最高。 KIAA0101在NPC组织和细胞系中高表达。此外,敲除KIAA0101显着抑制细胞增殖和DNA复制,促进体外细胞凋亡和细胞周期停滞。同时,机理研究表明,ELK1的MAP激酶磷酸化依赖性激活可能通过结合NPC细胞中的两个启动子区域来增强KIAA0101和TRIP4的邻近基因表达。两者合计,我们的发现表明,由MAP激酶磷酸化依赖性激活ELK1激活的KIAA0101的过表达可能在NPC进程中起重要作用。

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