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HEB, a helix-loop-helix protein related to E2A and ITF2 that can modulate the DNA-binding ability of myogenic regulatory factors.

机译:HEB,一种与E2A和ITF2相关的螺旋-环-螺旋蛋白,可调节成肌调节因子的DNA结合能力。

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摘要

Proteins containing the basic-helix-loop-helix (B-HLH) domain have been shown to be important in regulating cellular differentiation. We have isolated a cDNA for a human B-HLH factor, denoted HEB, that shares nearly complete identity in the B-HLH domain with the immunoglobulin enhancer binding proteins encoded by the E2A and ITF2 genes (E proteins). Functional characterization of the protein expressed from this cDNA indicates that HEB is a third member of the E-protein class of B-HLH factors. HEB mRNA was found to be expressed in several tissues and cell types, including skeletal muscle, thymus, and a B-cell line. HEB, ITF2, and the E12 product of the E2A gene all bound to a similar spectrum of E-box sequences as homo-oligomers. All three factors also formed hetero-oligomers with myogenin, and the DNA-binding specificity and binding off-rates (dissociation rates) were modulated after hetero-oligomerization. Both homo- and hetero-oligomers of these proteins were able to distinguish between very closely related E-box sequences. In addition, HEB was shown to form hetero-oligomers with the E12 and ITF2 proteins. Finally, HEB was able to activate gene expression. These data demonstrate that HEB shares characteristics with other E proteins and show that HEB can interact with members of both the myogenic regulatory class and the E-protein class of B-HLH factors. HEB is therefore likely to play an important role in regulating lineage-specific gene expression.
机译:含有碱性-螺旋-环-螺旋(B-HLH)结构域的蛋白质已显示在调节细胞分化中很重要。我们已经分离出一个人类B-HLH因子的cDNA,称为HEB,它与E2A和ITF2基因(E蛋白)编码的免疫球蛋白增强剂结合蛋白在B-HLH域中几乎完全相同。从该cDNA表达的蛋白质的功能表征表明,HEB是B-HLH因子E蛋白类别的第三个成员。发现HEB mRNA在几种组织和细胞类型中表达,包括骨骼肌,胸腺和B细胞系。 HEB,ITF2和E2A基因的E12产物都与同源寡聚体结合到相似的E-box序列光谱上。所有这三个因素也与肌生成素一起形成了异源寡聚体,异源寡聚化后调节了DNA结合特异性和结合解离速率(解离速率)。这些蛋白质的同源和异源寡聚体都能够区分非常密切相关的E-box序列。另外,HEB被证明与E12和ITF2蛋白形成异源寡聚体。最终,HEB能够激活基因表达。这些数据表明,HEB与其他E蛋白具有相同的特征,并且表明HEB可以与B-HLH因子的肌原性调节类和E蛋白类成员相互作用。因此,HEB可能在调节谱系特异性基因表达中起重要作用。

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