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KAI1 Gene Is Engaged in NDRG1 Gene-mediated Metastasis Suppression through the ATF3-NFκB Complex in Human Prostate Cancer*

机译:KAI1基因通过人前列腺癌的ATF3-NFκB复合体参与NDRG1基因介导的转移抑制*

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摘要

NDRG1 and KAI1 belong to metastasis suppressor genes, which impede the dissemination of tumor cells from primary tumors to distant organs. Previously, we identified the metastasis promoting transcription factor, ATF3, as a downstream target of NDRG1. Further analysis revealed that the KAI1 promoter contained a consensus binding motif of ATF3, suggesting a possibility that NDRG1 suppresses metastasis through inhibition of ATF3 expression followed by activation of the KAI1 gene. In this report, we found that ectopic expression of NDRG1 was able to augment endogenous KAI1 gene expression in prostate cancer cell lines, whereas silencing NDRG1 was accompanied with significant decrease in KAI1 expression in vitro and in vivo. In addition, our results of ChIP analysis indicate that ATF3 indeed bound to the promoter of the KAI1 gene. Importantly, our promoter-based analysis revealed that ATF3 modulated KAI1 transcription through cooperation with other endogenous transcription factor as co-activator (ATF3-JunB) or co-repressor (ATF3-NFκB). Moreover, loss of KAI1 expression significantly abrogated NDRG1-mediated metastatic suppression in vitro as well as in a spontaneous metastasis animal model, indicating that KA11 is a functional downstream target of the NDRG1 pathway. Our result of immunohistochemical analysis showed that loss of NDRG1 and KAI1 occurs in parallel as prostate cancer progresses. We also found that a combined expression status of these two genes serves as a strong independent prognostic marker to predict metastasis-free survival of prostate cancer patients. Taken together, our result revealed a novel regulatory network of two metastasis suppressor genes, NDRG1 and KAI1, which together concerted metastasis-suppressive activities through an intrinsic transcriptional cascade.
机译:NDRG1和KAI1属于转移抑制基因,它阻碍肿瘤细胞从原发肿瘤向远处器官的扩散。以前,我们确定转移促进转录因子ATF3作为NDRG1的下游靶标。进一步的分析表明,KAI1启动子包含ATF3的共有结合基序,这表明NDRG1通过抑制ATF3表达然后激活KAI1基因来抑制转移。在此报告中,我们发现NDRG1的异位表达能够增强前列腺癌细胞系中内源性KAI1基因的表达,而使NDRG1沉默则伴随着体内外KAI1表达的显着降低。此外,我们的ChIP分析结果表明,ATF3确实与KAI1基因的启动子结合。重要的是,我们基于启动子的分析显示,ATF3通过与其他内源转录因子(作为辅助激活剂(ATF3-JunB)或辅助阻遏物(ATF3-NFκB))合作来调节KAI1转录。此外,在体外以及自发转移动物模型中,KAI1表达的丧失显着废除了NDRG1介导的转移抑制,表明KA11是NDRG1途径的功能性下游靶标。我们的免疫组织化学分析结果表明,随着前列腺癌的进展,NDRG1和KAI1的丢失同时发生。我们还发现这两个基因的组合表达状态可作为强有力的独立预后标志物,预测前列腺癌患者的无转移生存。两者合计,我们的结果揭示了两个转移抑制基因NDRG1和KAI1的新型调控网络,它们通过内在的转录级联共同协同抑制转移的活性。

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