首页> 美国卫生研究院文献>Nucleic Acids Research >The expression pattern of Id4 a novel dominant negative helix-loop-helix protein is distinct from Id1 Id2 and Id3.
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The expression pattern of Id4 a novel dominant negative helix-loop-helix protein is distinct from Id1 Id2 and Id3.

机译:Id4(一种新型的显性负螺旋-环-螺旋蛋白)的表达模式与Id1Id2和Id3不同。

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摘要

Molecular interaction between transcription factors containing an basic-helix-loop-helix (bHLH) domain is known to regulate differentiation in several cellular systems including myogenesis, neurogenesis and haematopoiesis. DNA-binding activity of the bHLH proteins is mediated via the basic region and is dependent upon formation of homo- and/or heterodimers of these transcription factors. Dominant negative (dn) HLH proteins (Id1, Id2, Id3 and emc) also contain the HLH-dimerization domain but lack the DNA-binding basic region. Formation of heterodimers between dnHLH and bHLH proteins abolishes the DNA-binding activity of the latter. Concordantly, it was shown that the dnHLH protein Id1 inhibits differentiation of muscle and myeloid cells in vitro. Therefore, it was postulated that dnHLH proteins serve as general antagonists of cell differentiation. We have isolated and characterized a novel mouse dnHLH gene, designated Id4. The Id4 protein contains a HLH domain highly conserved among the dnHLH proteins from mouse and drosophila. Outside of the HLH domain, three additional short regions of the dnHLH proteins show some degree of homology. DNA-binding of E47 homo- as well as E47/MyoD heterodimers is inhibited by Id4. Transcription of the Id4 gene results in three RNA molecules of 3.7, 2.0 and 1.7 kb which are presumably a result of differential splicing and/or alternatively used polyadenylation sites within the 3' untranslated region. During embryogenesis, Id4 expression is up-regulated between day 9.5 and 13.5 of gestation. The highest expression in adult tissues was detected in testis, brain and kidney. Comparison of the expression patterns of the four mouse dnHLH genes revealed that Id4 expression differs from the more restricted expression of Id2 as well as from the widespread expression of Id1 and Id3.
机译:已知含有碱性-螺旋-环-螺旋(bHLH)结构域的转录因子之间的分子相互作用可调节包括肌发生,神经发生和造血作用在内的几种细胞系统的分化。 bHLH蛋白的DNA结合活性是通过碱性区域介导的,并取决于这些转录因子的同二聚体和/或异二聚体的形成。显性阴性(dn)HLH蛋白(Id1,Id2,Id3和emc)也包含HLH-二聚结构域,但缺少与DNA结合的碱性区域。 dnHLH和bHLH蛋白之间异源二聚体的形成消除了后者的DNA结合活性。一致地,显示出dnHLH蛋白Id1在体外抑制肌肉和骨髓细胞的分化。因此,推测dnHLH蛋白可作为细胞分化的一般拮抗剂。我们已经分离并表征了新的小鼠dnHLH基因,命名为Id4。 Id4蛋白包含一个HLH结构域,该结构域在来自小鼠和果蝇的dnHLH蛋白中高度保守。在HLH结构域之外,dnHLH蛋白的另外三个短区显示出一定程度的同源性。 Id4抑制E47同型以及E47 / MyoD异二聚体的DNA结合。 Id4基因的转录产生三个3.7、2.0和1.7 kb的RNA分子,这可能是3'非翻译区内差异剪接和/或使用的聚腺苷酸化位点的结果。在胚胎发生过程中,Id4的表达在妊娠的9.5至13.5天之间上调。在睾丸,大脑和肾脏中检测到成人组织中的最高表达。比较四个小鼠dnHLH基因的表达模式,发现Id4表达不同于Id2的限制性表达以及Id1和Id3的广泛表达。

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