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Cloning and Functional Analysis of FLJ20420:A Novel BAG-1 Promoter Transcription Factor
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作者 Jun CHEN, Hongyu LIU, Yun BAI, Jin WANG, Heng WU, Baoxin LIU, Ying LI, Lingling ZU, Shou-Ching TANG, Qinghua ZHOU Tianjin Key Laboratory of Lung Cancer Metastasis and Tumor Microenviroment Tianjin Lung Cancer Institute, Tianjin Medical University General Hospital, Anshan Road No.154, Heping District, Tianjin 300052, China 《中国肺癌杂志》 CAS 2009年第6期671-671,共1页
BAG-1 is an anti-apoptotic protein that interacts with a variety of cellular molecules to inhibit apoptosis. It is also important in the prognosis of several human malignancies such as breast cancer. We have previousl... BAG-1 is an anti-apoptotic protein that interacts with a variety of cellular molecules to inhibit apoptosis. It is also important in the prognosis of several human malignancies such as breast cancer. We have previously cloned the human BAG-1 promoter. Using BAG-1 promoter as a probe, we identi ed a cDNA clone that encodes a novel BAG-1 promoter-binding protein, termed FLJ20420. The FLJ20420 protein speci cally bind to BAG-1 promoter (-353 to -128 bp) and decreased BAG-1 promoter activity ~30% by cotransfecting the pcDNA3.1-FLJ20420 and BGP-Luc BAG-1 promoter into lung cancer cell lines A549 and L9981. The FLJ20420 gene encodes a ~26kD protein localized in both cytoplasm and nucleus. Comparison of human FLJ20420 with mouse sequences showed a 90% homology with mouse gene, named CHCHD3. Furthermore, Northern blot revealed that FLJ20420 has low-level transcriptional expression in most human normal tissues (brain, placenta, lung, liver, kidney, pancreas and cervix) except in heart and skeletal muscle, and has a clear expression in most tumor cell lines. Knockdown of endogenous FLJ20420 significantly increased the expression of BAG-1 in A549 and L9981 cells, as analyzed by real-time PCR and western blotting. Gene array studies in lung cancer tissue samples indicated that there is a significant change in expression of FLJ20420 between the primary lung cancer and the paired normal lung tissues (P=0.0002), while BAG-1 has a significantly decreased expression in the primary lung cancers compared to the paired normal lung tissues (P=0.0001) , suggesting that the expression of BAG-1 was controlled by positive as well as negative transcription factors. Our observation was further confirmedby real-time PCR analysis of FLJ20420 and BAG-1 expressions in these tissues. Taken together, our results suggest that FLJ20420 functions as a down-regulator of BAG-1 and its expression may be involved in oncogenesis of human malignancy. 展开更多
关键词 flj20420 肺癌 治疗 BAG-1
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Changes of Gene Expression Prof iles and Biological Behaviors in Different Human Lung Cancer Cell Lines by FLJ20420 Gene Silencing
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作者 Baoxing LIU Hui LV Xiaoming QIU Ting WANG Yu FAN Li MA Jun CHEN Sen WEI Zhigang LI Hongyu LIU Haisu WAN Zhihao WU Qinghua ZHOU 《中国肺癌杂志》 CAS 2009年第6期514-515,共2页
Background and Objective Lung cancer is the leading cause of cancer death in both men and women in both China and worldwide. Apoptosis is a highly regulated,
关键词 肺癌 癌细胞 扩散 疗效
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RNAi非特异效应的干扰素反应探讨 被引量:1
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作者 梁永刚 刘红雨 +4 位作者 刘宝兴 白云 吴蘅 周清华 陈军 《中国肺癌杂志》 CAS 2009年第1期16-22,共7页
背景与目的RNA干扰(RNA interference,RNAi)是一项针对转录后特异序列基因沉默的技术,可用于调控基因表达和研究基因功能。但该技术引发的非特异效应也越来越受到重视。其中,干扰素反应为RNAi非特异效应的主要类型之一。本文拟探讨在RN... 背景与目的RNA干扰(RNA interference,RNAi)是一项针对转录后特异序列基因沉默的技术,可用于调控基因表达和研究基因功能。但该技术引发的非特异效应也越来越受到重视。其中,干扰素反应为RNAi非特异效应的主要类型之一。本文拟探讨在RNA干扰实验中干扰素反应的检测。方法在A549人肺癌细胞株中应用基因转染技术研究5个不同的FLJ20420 siRNA对FLJ20420基因沉默情况;应用real-time PCR和基因芯片技术相结合,分别检测经2个不同FLJ20420-siRNA干扰后A549细胞中干扰素激活基因(ISGs)表达谱的变化情况。结果①在A549细胞中,5个不同的FLJ20420-siRNA可不同程度地对目的基因起到沉默作用,其中FLJ20420-siRNA-1和FLJ20420-siRNA-4两个的沉默效果最佳,分别为80%和90%;②应用real-timePCR检测与干扰素反应激活相关的16个主要标志性基因发现,A549-FLJ-siRNA-1细胞中有14个基因的表达明显上调;而A549-FLJ-siRNA-4细胞中仅有2个基因的表达变化差异具有显著性,提示在A549-FLJ-siRNA-1细胞中发生了RNAi的非特异性效应;③基因芯片分析发现在A549-FLJ-siRNA-1细胞中有51个干扰素激活基因(ISGs)表达上调2倍以上(P<0.05),而在A549-FLJ-siRNA-4细胞中仅有6个干扰素激活基因(ISGs)表达上调2倍以上(P<0.05),从而证实了A549-FLJ-siRNA-1细胞中存在RNAi的非特异性效应干扰素反应。结论在进行RNAi实验时,siRNA不仅能针对目的基因产生沉默效果,也可同时诱发干扰素反应。应用real-time PCR对于主要的干扰素激活基因(ISGs)的mRNA表达变化的检测将有助于发现RNAi非特异效应干扰素反应。 展开更多
关键词 RNAI flj20420 干扰素反应 干扰素激活基因
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