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Ubiquitous expression of the 43- and 44-kDa forms of transcription factor USF in mammalian cells.

机译:转录因子USF的43 kDa和44 kDa形式在哺乳动物细胞中的普遍表达。

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摘要

USF is a helix-loop-helix transcription factor that, like Myc, recognizes the DNA binding motif CACGTG. Two different forms of USF, characterized by apparent molecular weights of 43,000 and 44,000, were originally identified in HeLa cells by biochemical analysis. Clones for the 43-kDa USF were first characterized, but only partial clones for the human 44-kDa USF (USF2, or FIP) have been reported. Here we describe a complete cDNA for the 44-kDa USF from murine cells. Analysis of this clone has revealed that the various USF family members are quite divergent in their N-terminal amino acid sequences, while a high degree of conservation characterizes their dimerization and DNA-binding domains. Interestingly, the 3' noncoding region of the 44-kDa USF cDNAs displayed an unusual degree of conservation between human and mouse. In vitro transcription/translation experiments indicated a possible role for this region in translation regulation. Alternative splicing forms of the 44-kDa USF messages exist in both mouse and human. Examination of the tissue and cell-type distribution of USF by Northern blot and gel retardation assays revealed that while expression of both the 43- and 44-kDa USF species is ubiquitous, different ratios of USF homo- and heterodimers are found in different cells.
机译:USF是一种螺旋-环-螺旋转录因子,与Myc一样,可识别DNA结合基序CACGTG。通过生化分析最初在HeLa细胞中鉴定出两种不同形式的USF,其特征在于43,000和44,000的表观分子量。首先鉴定了43 kDa USF的克隆,但仅报道了人类44 kDa USF(USF2或FIP)的部分克隆。在这里,我们描述了来自鼠细胞的44 kDa USF的完整cDNA。对该克隆的分析表明,各个USF家族成员的N端氨基酸序列差异很大,而高度保守则是其二聚化和DNA结合域的特征。有趣的是,44 kDa USF cDNA的3'非编码区在人和小鼠之间显示出不同寻常的保守性。体外转录/翻译实验表明该区域可能在翻译调控中发挥作用。小鼠和人类中都存在44 kDa USF信息的其他剪接形式。通过Northern印迹和凝胶阻滞分析对USF的组织和细胞类型分布进行的检查显示,虽然43 kDa和44 kDa USF物种的表达普遍存在,但在不同的细胞中发现了不同比例的USF同型和异二聚体。

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