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Role of Kruppel-Like Factors in gamma-globin regulation through the CACCC promoter element.

机译:Kruppel样因子通过CACCC启动子元件在γ-球蛋白调节中的作用。

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摘要

The CACCC element is critical for the developmental regulation of the human gamma-globin and beta-globin genes; therefore studies to identify transcription factors that bind this region to alter gene transcription are essential. In this study, we initially screened for candidate Kruppel-Like Factors (KLFs) that might be involved in gamma-globin regulation. Based on the microarray expression profiling study and gamma-globin drug induction, KLF4 emerged as a potential regulator of gamma-globin transcription. To characterize the role of this factor further, siRNA-mediated gene silencing was performed in K562 cells (expressing epsilon- and gamma-globin genes). A 52% reduction in KLF4 expression produced a 56% attenuation in gamma-globin transcription (p0.05). Furthermore, enforced expression of pMT3-KLF4 (20mug) augmented endogenous gamma-globin expression 2-fold (p0.01). Collectively, these studies suggest KLF4 acts as a trans-activator of gamma-globin. To address the physiological relevance of these findings, studies were extended to human primary erythroid cells grown in a two-phase liquid culture system. siKLF4 treatment at day 11 and enforced KLF4 expression at day 28 cnfirmed the regulatory role of KLF4 in primary erythroid cells. Since CREB binding protein (CBP) is known to associate with KLF1, 4 and 13, we also tested its role in KLF4 mediated gamma-globin gene regulation. Electrophoretic mobility shift assay established in vitro binding of KLF4 at the gamma-CACCC region; parallel studies at beta-CACCC did not reveal any KLF4 binding, highlighting a gene specific interaction. Interestingly, CBP bound to both these CACCC domains. Co-immunoprecipitation assay demonstrated endogenous interaction between KLF4 and CBP. Furthermore, chromatin immunoprecipitation assay (ChIP) and a subsequent sequential-ChIP confirmed their co-localization at the gamma-CACCC region. Finally we performed luciferase-reporter based transient studies which demonstrated KLF4 trans-activates gamma-globin promoter activity recapitulating our earlier data. In contrast, CBP enforced expression resulted in repression which was rather unexpected. Our data supports a model of antagonistic interactions of KLF4/CBP in gamma-globin gene regulation.
机译:CACCC元件对于人类γ-珠蛋白和β-珠蛋白基因的发育调控至关重要。因此,研究鉴定结合该区域以改变基因转录的转录因子至关重要。在这项研究中,我们最初筛选了可能参与伽玛球蛋白调节的候选Kruppel样因子(KLF)。基于微阵列表达谱研究和γ-珠蛋白药物诱导,KLF4成为γ-珠蛋白转录的潜在调节剂。为了进一步表征该因子的作用,在K562细胞(表达ε和γ珠蛋白基因)中进行了siRNA介导的基因沉默。 KLF4表达降低52%,导致γ-珠蛋白转录降低56%(p <0.05)。此外,pMT3-KLF4(20mug)的强制表达使内源性γ-球蛋白表达增加了2倍(p <0.01)。总的来说,这些研究表明KLF4充当γ-珠蛋白的反式激活因子。为了解决这些发现的生理相关性,研究扩展到在两相液体培养系统中生长的人类原代红系细胞。在第11天进行siKLF4处理并在第28天增强了KLF4表达,这证实了KLF4在原代红系细胞中的调节作用。由于已知CREB结合蛋白(CBP)与KLF1、4和13相关,我们还测试了其在KLF4介导的γ-珠蛋白基因调控中的作用。电泳迁移率迁移分析建立了KLF4在γ-CACCC区域的体外结合;在beta-CACCC上进行的平行研究未发现任何KLF4结合,强调了基因特异性相互作用。有趣的是,CBP绑定到这两个CACCC域。免疫共沉淀试验证明了KLF4和CBP之间的内源性相互作用。此外,染色质免疫沉淀测定法(ChIP)和随后的连续ChIP证实了它们在γ-CACCC区域的共定位。最后,我们进行了基于荧光素酶报告的瞬时研究,结果表明KLF4反式激活了γ-珠蛋白启动子的活性,从而概括了我们先前的数据。相反,CBP强制表达导致抑制,这是出乎意料的。我们的数据支持KLF4 / CBP在γ-珠蛋白基因调控中的拮抗相互作用模型。

著录项

  • 作者

    Kalra, Inderdeep S.;

  • 作者单位

    The University of Texas at Dallas.;

  • 授予单位 The University of Texas at Dallas.;
  • 学科 Biology Molecular.;Biology Genetics.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 87 p.
  • 总页数 87
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 康复医学;
  • 关键词

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