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首页> 外文期刊>Cell death & disease. >KLF5 inhibits STAT3 activity and tumor metastasis in prostate cancer by suppressing IGF1 transcription cooperatively with HDAC1
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KLF5 inhibits STAT3 activity and tumor metastasis in prostate cancer by suppressing IGF1 transcription cooperatively with HDAC1

机译:通过抑制HDAC1,通过抑制IGF1转录抑制前列腺癌中的STAT3活性和肿瘤转移

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KLF5 is frequently deleted and downregulated in prostate cancer, and recently it has been reported that KLF5 loss is enriched in the aggressive branches of prostate cancer evolution. However, why KLF5 loss is associated with prostate cancer aggressiveness is still not clear. Herein, we analyzed KLF5 expression in TCGA and GEO database, as well as prostate cancer tissue microarray, and found that KLF5 expression significantly decreased in prostate cancer accompanying with tumor progression; moreover, KLF5 downregulation was associated with shorter survival of patients. Interestingly, we also found that KLF5 expression was obviously lower in prostate cancer metastases than in localized tissues, indicating that KLF5 downregulation is associated with prostate cancer invasion and metastasis. To assess this effect of KLF5, we knocked down KLF5 in prostate cancer cells and found that KLF5 knockdown promoted invasive ability of prostate cancer cells in vitro and in vivo. Moreover, we found that KLF5 downregulation enhanced the expression of IGF1 and STAT3 phosphorylation, while block of IGF1 with antibody decreased the enhancement of STAT3 activity and prostate cancer cell invasive ability by KLF5 knockdown, indicating that KLF5 inhibits prostate cancer invasion through suppressing IGF1/STAT3 pathway. Mechanistically, we found that KLF5 interacted with deacetylase HDAC1 and KLF5 is necessary for the binding of HDAC1 on IGF1 promoter to suppress IGF1 transcription. Taken together, our results indicate that KLF5 could be an important suppressor of prostate cancer invasion and metastasis, because KLF5 could suppress the transcription of IGF1, a tumor cell autocrine cytokine, and its downstream cell signaling to inhibit cell invasive ability, and reveal a novel mechanism for STAT3 activation in prostate cancer. These findings may provide evidence for the precision medicine in prostate cancer.
机译:KLF5经常被删除和下调在前列腺癌中,最近据报道,在前列腺癌进化的侵略性分支中富集了KLF5损失。但是,为什么KLF5损失与前列腺癌侵略性仍未清楚。在此,我们分析了TCGA和Geo数据库中的KLF5表达,以及前列腺癌组织微阵列,发现伴随肿瘤进展的前列腺癌中KLF5表达显着降低;此外,KLF5下调与患者的较短生存有关。有趣的是,在前列腺癌转移中,KLF5表达明显低于局部组织,表明KLF5下调与前列腺癌侵袭和转移相关。为了评估KLF5的这种效果,我们在前列腺癌细胞中击倒了KLF5,发现KLF5敲低促进了前列腺癌细胞在体外和体内的侵入能力。此外,我们发现KLF5下调增强了IGF1和STAT3磷酸化的表达,而IGF1的块通过KLF5敲低度降低了STAT3活性和前列腺癌细胞侵入能力的增强,表明KLF5通过抑制IGF1 / Stat3抑制前列腺癌侵袭途径。机械地,我们发现与脱乙酰酶HDAC1和KLF5相互作用的KLF5对于HDAC1对IGF1启动子的结合需要抑制IGF1转录。我们的结果表明,KLF5可能是前列腺癌侵袭和转移的重要抑制因素,因为KLF5可以抑制IGF1,肿瘤细胞自分泌细胞因子的转录及其下游细胞信号,以抑制细胞侵入能力,并揭示一种新颖前列腺癌中Stat3活化的机制。这些发现可以为前列腺癌中的精密药提供证据。

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