...
首页> 外文期刊>BMC Genomics >The Krüppel-like factor 9 cistrome in mouse hippocampal neurons reveals predominant transcriptional repression via proximal promoter binding
【24h】

The Krüppel-like factor 9 cistrome in mouse hippocampal neurons reveals predominant transcriptional repression via proximal promoter binding

机译:小鼠海马神经元中的Krüppel样因子9综合征通过近端启动子结合揭示了主要的转录抑制

获取原文
           

摘要

Background Krüppel-like factor 9 (Klf9) is a zinc finger transcription factor that functions in neural cell differentiation, but little is known about its genomic targets or mechanism of action in neurons. Results We used the mouse hippocampus-derived neuronal cell line HT22 to identify genes regulated by Klf9, and we validated our findings in mouse hippocampus. We engineered HT22 cells to express a Klf9 transgene under control of the tetracycline repressor, and used RNA sequencing to identify genes modulated by Klf9. We found 217 genes repressed and 21 induced by Klf9. We also engineered HT22 cells to co-express biotin ligase and a Klf9 fusion protein containing an N-terminal biotin ligase recognition peptide. Using chromatin-streptavidin precipitation (ChSP) sequencing we identified 3,514 genomic regions where Klf9 associated. Seventy-five percent of these were within 1?kb of transcription start sites, and Klf9 associated in chromatin with 60% of the repressed genes. We analyzed the promoters of several repressed genes containing Klf9 ChSP peaks using transient transfection reporter assays and found that Klf9 repressed promoter activity, which was abolished after mutation of Sp/Klf-like motifs. Knockdown or knockout of Klf9 in HT22 cells caused dysregulation of Klf9 target genes. Chromatin immunoprecipitation assays showed that Klf9 associated in chromatin from mouse hippocampus with genes identified by ChSP sequencing on HT22 cells, and expression of Klf9 target genes was dysregulated in the hippocampus of neonatal Klf9 -null mice. Gene ontology analysis revealed that Klf9 genomic targets include genes involved in cystokeletal remodeling, Wnt signaling and inflammation. Conclusions We have identified genomic targets of Klf9 in hippocampal neurons and created a foundation for future studies on how it functions in chromatin, and regulates neuronal morphology and survival across the lifespan.
机译:背景Krüppel样因子9(Klf9)是在神经细胞分化中起作用的锌指转录因子,但对其基因组靶标或在神经元中起作用的机制知之甚少。结果我们使用小鼠海马来源的神经元细胞系HT22来鉴定Klf9调控的基因,并验证了我们在小鼠海马中的发现。我们改造了HT22细胞,使其在四环素阻遏物的控制下表达Klf9转基因,并使用RNA测序来鉴定由Klf9调控的基因。我们发现217个基因被Klf9抑制,其中21个被Klf9诱导。我们还设计了HT22细胞,以共表达生物素连接酶和含有N末端生物素连接酶识别肽的Klf9融合蛋白。使用染色质-链霉亲和素沉淀(ChSP)测序,我们鉴定了3,514个与Klf9相关的基因组区域。其中75%位于转录起始位点的1?kb范围内,而Klf9在染色质中与60%的受抑制基因相关。我们使用瞬时转染报告基因分析法分析了几个含有Klf9 ChSP峰的受阻基因的启动子,发现Klf9抑制了启动子活性,该活性在Sp / Klf样基序突变后被取消。敲除或敲除HT22细胞中的Klf9会导致Klf9靶基因失调。染色质免疫沉淀试验表明,小鼠海马的染色质中的Klf9与HT22细胞上通过ChSP测序鉴定的基因相关,并且Klf9靶基因的表达在新生Klf9无效小鼠的海马中表达失调。基因本体分析表明,Klf9基因组靶标包括参与膀胱小囊泡重塑,Wnt信号传导和炎症的基因。结论我们已经确定了海马神经元中Klf9的基因组靶标,并为以后研究其在染色质中的功能,调节神经元形态和整个生存期奠定了基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号