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Identification of Proteins Binding to E-Box/Ku86 Sites and Function of the Tumor Suppressor SAFB1 in Transcriptional Regulation of the Human Xanthine Oxidoreductase Gene*

机译:结合E-Box / Ku86位点的蛋白质的鉴定及其功能 黄嘌呤转录调控中的肿瘤抑制因子SAFB1 氧化还原酶基因*

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摘要

The xanthine oxidoreductase gene (XOR) encodes an important source of reactive oxygen species and uric acid, and its expression is associated with various human diseases including several forms of cancer. We previously reported that basal human XOR (hXOR) expression is restricted or repressed by E-box and TATA-like elements and a cluster of transcriptional proteins, including AREB6-like proteins and DNA-dependent protein kinase (DNA-PK). We now demonstrate that the cluster contains the tumor suppressors SAFB1, BRG1, and SAF-A. We further demonstrate that SAFB1 silencing increases hXOR expression and that SAFB1 directly binds to the E-box. Multiple studies in vitro and in vivo including pulldown, immunoprecipitation and chromatin immunoprecipitation analyses indicate that SAFB1, Ku86, and BRG1 associate with each other. The results suggest that the SAFB1 complex binds to the hXOR promoter in a chromatin environment and plays a critical role in restricting hXOR expression via its direct interaction with the E-box, DNA-PK, and tumor suppressors. Moreover, we demonstrate that the cytokine, oncostatin M (OSM), induces the phosphorylation of SAFB1 and that the OSM-induced hXOR mRNA expression is significantly inhibited by silencing the DNA-PK catalytic subunit or SAFB1 expression. The present studies for the first time demonstrate that hXOR is a tumor suppressor-targeted gene and that the phosphorylation of SAFB1 is regulated by OSM, providing a molecular basis for understanding the role of SAFB1-regulated hXOR transcription in cytokine stimulation and tumorigenesis.
机译:黄嘌呤氧化还原酶基因(XOR)编码活性氧和尿酸的重要来源,其表达与包括多种癌症在内的多种人类疾病有关。我们先前曾报道,基础人类XOR(hXOR)表达受到E-box和TATA样元件以及包括AREB6样蛋白和DNA依赖性蛋白激酶(DNA-PK)在内的一系列转录蛋白的限制或抑制。现在,我们证明该簇包含肿瘤抑制物SAFB1,BRG1和SAF-A。我们进一步证明了SAFB1沉默增加了hXOR表达,并且SAFB1直接与E-box结合。多项体内外研究包括下拉,免疫沉淀和染色质免疫沉淀分析表明SAFB1,Ku86和BRG1相互关联。结果表明,SAFB1复合物在染色质环境中与hXOR启动子结合,并通过与e-box,DNA-PK和肿瘤抑制因子的直接相互作用在限制hXOR表达中起关键作用。此外,我们证明了细胞因子,抑瘤素M(OSM),诱导SAFB1的磷酸化,并且通过沉默DNA-PK催化亚基或SAFB1表达,显着抑制了OSM诱导的hXOR mRNA表达。本研究首次证明hXOR是靶向肿瘤抑制物的基因,并且SAFB1的磷酸化受OSM调控,为理解SAFB1调控hXOR转录在细胞因子刺激和肿瘤发生中的作用提供了分子基础。

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