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首页> 外文期刊>Molecular and Cellular Biology >An activation domain of the helix-loop-helix transcription factor E2A shows cell type preference in vivo in microinjected zebra fish embryos.
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An activation domain of the helix-loop-helix transcription factor E2A shows cell type preference in vivo in microinjected zebra fish embryos.

机译:螺旋-环-螺旋转录因子E2A的激活域在显微注射的斑马鱼胚胎体内显示出细胞类型偏好。

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摘要

The E2A protein is a mammalian transcription factor of the helix-loop-helix family which is implicated in cell-specific gene expression in several cell lineages. Mouse E2A contains two independent transcription activation domains, ADI and ADII; whereas ADI functions effectively in a variety of cultured cell lines, ADII shows preferential activity in pancreatic beta cells. To analyze this preferential activity in an in vivo setting, we adapted a system involving transient gene expression in microinjected zebra fish embryos. Fertilized one- to four-cell embryos were coinjected with an expression plasmid and a reporter plasmid. The expression plasmids used encode the yeast Gal4 DNA-binding domain (DBD) alone, or Gal4 DBD fused to ADI, ADII, or VP16. The reporter plasmid includes the luciferase gene linked to a promoter containing repeats of UASg, the Gal4-binding site. Embryo extracts prepared 24 h after injection showed significant luciferase activity in response to each of the three activation domains. To determine the cell types in which the activation domains were functioning, a reporter plasmid encoding beta-galactosidase and then in situ staining of whole embryos were used. Expression of ADI led to activation in all major groups of cell types of the embryo (skin, sclerotome, myotome, notochord, and nervous system). On the other hand, ADII led to negligible expression in the sclerotome, notochord, and nervous system and much more frequent expression in the myotome. Parallel experiments conducted with transfected mammalian cells have confirmed that ADII shows significant activity in myoblast cells but little or no activity in neuronal precursor cells, consistent with our observations in zebra fish. This transient-expression approach permits rapid in vivo analysis of the properties of transcription activation domains: the data show that ADII functions preferentially in cells of muscle lineage, consistent with the notion that certain activation domains contribute to selective gene activation in vivo.
机译:E2A蛋白是螺旋-环-螺旋家族的哺乳动物转录因子,与几种细胞谱系中的细胞特异性基因表达有关。小鼠E2A包含两个独立的转录激活域,ADI和ADII; ADI在多种培养的细胞系中有效发挥作用,而ADII在胰腺β细胞中显示出优先活性。为了在体内环境中分析这种优先活性,我们采用了一种涉及在显微注射斑马鱼胚胎中瞬时基因表达的系统。将受精的一到四细胞胚胎与表达质粒和报告质粒共注射。使用的表达质粒仅编码酵母Gal4 DNA结合结构域(DBD),或与ADI,ADII或VP16融合的Gal4 DBD。报道质粒包括与启动子相连的荧光素酶基因,该启动子包含UASg的重复序列,即Gal4结合位点。注射后24小时制备的胚胎提取物显示出对三个活化域中的每一个均具有响应的显着的萤光素酶活性。为了确定活化域在其中起作用的细胞类型,使用了编码β-半乳糖苷酶的报道质粒,然后使用了整个胚胎的原位染色。 ADI的表达导致所有主要类型的胚胎细胞类型(皮肤,巩膜切开器,肌膜切开器,脊索和神经系统)激活。另一方面,ADII导致在巩膜刀,脊索和神经系统中的表达可忽略不计,而在子宫肌瘤中的表达更为频繁。用转染的哺乳动物细胞进行的平行实验已经证实,ADII在成肌细胞中显示出显着的活性,而在神经元前体细胞中则几乎没有或没有活性,这与我们在斑马鱼中的观察结果一致。这种瞬时表达方法可以对转录激活域的特性进行体内快速分析:数据显示ADII在肌肉谱系细胞中优先发挥作用,这与某些激活域有助于体内选择性基因激活的观点一致。

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