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首页> 外文期刊>Oncogene >Hypoxic repression of STAT1 and its downstream genes by a pVHL|[sol]|HIF-1 target DEC1|[sol]|STRA13
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Hypoxic repression of STAT1 and its downstream genes by a pVHL|[sol]|HIF-1 target DEC1|[sol]|STRA13

机译:pVHL | [sol] | HIF-1靶点DEC1 | [sol] | STRA13对STAT1及其下游基因的低氧抑制

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DEC1/STRA13 is a bHLH type transcriptional regulator involved with immune regulation, hypoxia response and carcinogenesis. We recently demonstrated that STRA13 interacts with STAT3 in the transcriptional activation of STAT-dependent promoters. Here, we pursue STRA13 involvement in the JAK/STAT pathway by studying its role in STAT1 expression. First, we showed that VHL deficiency or HIF-1 activation resulted in the repression of endogenous STAT1 mediated by STRA13. We then characterized the STAT1 proximal promoter to assess its response to STRA13 by transient coexpression in a luciferase reporter assay. Using sequential truncation and site-directed mutagenesis of the STAT1 promoter with STRA13 deletion constructs, we showed that the STRA13 C-terminal trans-activation domain, which is known to bind HDAC1, mostly determines the repressive activity. Involvement of HDAC activity in STAT1 regulation was validated by TSA inhibition and chromatin immunoprecipitation (ChIP) assay. Thus, we demonstrate that STRA13-mediated repression of STAT1 transcription utilizes an HDAC1-dependent mechanism. Furthermore, we show that targets of unphosphorylated STAT1, such as antigen presenting genes and CASP1, are also repressed by hypoxia possibly through the same STRA13-mediated mechanism. Thus, the newly discovered link between HIF-1 and STAT1 reveals a previously unknown role of STRA13 in hypoxia and carcinogenesis.
机译:DEC1 / STRA13是涉及免疫调节,缺氧反应和致癌作用的bHLH型转录调节子。我们最近证明,STRA13在STAT依赖性启动子的转录激活中与STAT3相互作用。在这里,我们通过研究其在STAT1表达中的作用,寻求STRA13参与JAK / STAT途径。首先,我们表明VHL缺乏或HIF-1激活导致STRA13介导的内源STAT1的抑制。然后,我们表征了STAT1近端启动子,以通过荧光素酶报道基因分析中的瞬时共表达来评估其对STRA13的反应。使用具有STRA13缺失构建体的STAT1启动子的顺序截断和定点诱变,我们显示已知结合HDAC1的STRA13 C末端反式激活域主要决定了抑制活性。通过TSA抑制和染色质免疫沉淀(ChIP)分析验证了HDAC活性参与STAT1调节。因此,我们证明STRA13介导的STAT1转录抑制利用HDAC1依赖性机制。此外,我们显示未磷酸化STAT1的靶标,例如抗原呈递基因和CASP1,也可能通过相同的STRA13介导的机制被缺氧抑制。因此,新发现的HIF-1和STAT1之间的联系揭示了STRA13在缺氧和癌变中的未知作用。

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