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Characterization and functional analysis of the Oct1 and BOB.1 transcription factors in the channel catfish (Ictalurus punctatus).

机译:channel鱼(Ictalurus punctatus)中Oct1和BOB.1转录因子的表征和功能分析。

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摘要

The intronic enhancer, Emu3' has previously been identified within the immunoglobulin heavy chain locus of the channel catfish (Ictalurus punctatus). Within the numerous potential cis-regulatory elements of this enhancer, are included two variant octamer motifs (ATGtAAAT) and a muE5 site which make up the functional core region necessary to drive transcription from this locus. The reliance on octamer motifs and a muE5 site to drive transcription represents a functional shift from that of higher vertebrates which rely primarily on Ets transcription factor binding sites and a muE3 site to drive transcription. This suggests that Oct transcription factors that bind to the octamer motif play an important role in immunoglobulin gene transcription in the channel catfish. The catfish Oct2 transcription factor was previously cloned and shown to activate transcription from the variant octamer motifs found within this enhancer. The goal of this study was to clone orthologues of the Oct1 transcription factor and the coactivator BOB.1 in the channel catfish and characterize their role in driving transcription of the immunoglobulin heavy chain locus. A combination of molecular techniques and comparative genomics were used to achieve this goal.; Catfish Oct1 was cloned and the overall gene structure was found to be highly conserved, particularly within the bipartite DNA binding domain, whose identity at the amino acid level to mouse Oct1 was 96% within the POU specific domain and 78% within the POU homeodomain. Catfish Oct1 was found to be widely expressed in all tissues and cell types tested. Surprisingly, catfish Oct1 failed to drive transcription from a number of octamer-containing reporter constructs including the core region of the Emu3' enhancer, but was capable of binding to both consensus and variant octamer motifs. The failure of catfish Oct1 to drive transcription was due to a lack of functional activation domains within either the N or C terminal regions of the protein. Catfish Oct1 acts as a dominant negative transcription factor over catfish Oct2, most likely through competition for DNA binding sites. Thus, catfish Oct1 appears to be a negative regulator of immunoglobulin gene transcription within the channel catfish.
机译:内含子增强子Emu3'先前已在channel鱼(Ictalurus punctatus)的免疫球蛋白重链基因座中鉴定出来。在该增强子的众多潜在的顺式调控元件中,包括两个变异的八聚体基序(ATGtAAAT)和一个muE5位点,这些位点构成了驱动从该基因座转录所需的功能核心区。依靠八聚体基序和一个muE5位点来驱动转录代表了功能性转变,与主要依靠Ets转录因子结合位点和一个muE3位点来驱动转录的高等脊椎动物相比。这表明结合八聚体基序的Oct转录因子在channel鱼的免疫球蛋白基因转录中起重要作用。 previously鱼Oct2转录因子先前已被克隆并显示出可激活该增强子中八聚体变体的转录。这项研究的目的是在channel鱼中克隆Oct1转录因子和共激活因子BOB.1的直向同源物,并表征它们在驱动免疫球蛋白重链基因座转录中的作用。结合分子技术和比较基因组学来达到这个目标。克隆了fish鱼Oct1,发现整体基因结构高度保守,特别是在二分体DNA结合域内,其​​与小鼠Oct1的氨基酸水平同一性在POU特定域内为96%,在POU同源域内为78%。发现tested鱼Oct1在所有测试的组织和细胞类型中广泛表达。出人意料的是,fish鱼Oct1无法驱动包含八聚体的报道分子构建体(包括Emu3'增强子的核心区域)的转录,但能够与共有和八聚体基序结合。 fish鱼Oct1无法驱动转录是由于蛋白质N或C末端区域内缺少功能性激活域。 cat鱼Oct1是Oct鱼Oct2的主要负转录因子,很可能是通过竞争DNA结合位点来实现的。因此,cat鱼Oct1似乎是通道channel鱼中免疫球蛋白基因转录的负调控因子。

著录项

  • 作者

    Lennard Richard, Mara L.;

  • 作者单位

    Medical University of South Carolina.;

  • 授予单位 Medical University of South Carolina.;
  • 学科 Biology Molecular.; Agriculture Fisheries and Aquaculture.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 258 p.
  • 总页数 258
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;水产、渔业;
  • 关键词

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