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Transcriptional regulation of the human cystathionine beta-synthase-1b basal promoter: synergistic transactivation by transcription factors NF-Y and Sp1/Sp3

机译:人胱硫醚β-合酶-1b基础启动子的转录调控:转录因子NF-Y和Sp1 / Sp3的协同反式激活。

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Cystathionine beta -synthase (CBS) catalyses the condensation of serine and homocysteine to form cystathionine, an intermediate step in the synthesis of cysteine. Human CBS encodes five distinct 5 ' non-coding exons, the most frequent termed CBS -1a and CBS -1b, each transcribed from its own unique GC-rich TATA-less promoter. The minimal transcriptional region (- 3792 to - 3667) of the CBS -1b promoter was defined by 5 ' and 3 ' -deletions, and transient transfections of reporter gene constructs in HepG2 cells, characterized by CBS transcription exclusively from the -Ib promoter, Included in this 125 bp region are 3 GC-boxes (termed GC-a, GC-b and GC-c), an inverted CAAT-box and an E-box. By gel-shift and supershift assays, binding of specificity protein (Sp)l and Sp3 to the GC box elements, upstream stimulatory factor 1 (USF-1) to the E-box, and both nuclear factor (NF)-Y and an NF-1-like factor to the CAAT box could be demonstrated. By transient transfections and reporter gene assays in HepG2 and Drosophiln SL2 cells, a functional interplay was indicated between NF-Y binding to the CAAT-box, or between USF-I binding to the E-box, and Sp1/Sp3 binding to the GC-box elements. In SL2 cells, NF-Y and Sp1/Sp3 were synergistic, Furthermore, both Spl and the long Sp3 isoform transactivated the CBS -1b minimal promoter: however, the short Sp3 isoforms were potent repressors. These results may explain the cell- or tissue-specific regulation of CBS transcription, and clarify the bases for alterations in CBS gene expression in human disease and Downs syndrome. [References: 38]
机译:胱硫醚β-合酶(CBS)催化丝氨酸和高半胱氨酸的缩合形成胱硫醚,这是合成半胱氨酸的中间步骤。人类CBS编码5个不同的5'非编码外显子,最常被称为CBS -1a和CBS -1b,每个都从其自身独特的富含GC的无TATA启动子转录而来。 CBS -1b启动子的最小转录区(-3792至-3667)由5'和3'-缺失以及报告基因构建体在HepG2细胞中的瞬时转染定义,其特征是CBS仅从-Ib启动子转录,在这125 bp的区域中包括3个GC盒(称为GC-a,GC-b和GC-c),一个倒置的CAAT盒和一个E-盒。通过凝胶迁移和超迁移测定,特异性蛋白(Sp)1和Sp3与GC盒元件,上游刺激因子1(USF-1)与E-box以及核因子(NF)-Y和可以证明CAAT盒具有类似NF-1的因子。通过在HepG2和果蝇SL2细胞中进行瞬时转染和报告基因分析,表明了NF-Y与CAAT-box结合或USF-1与E-box结合以及Sp1 / Sp3与GC结合之间的功能相互作用。 -box元素。在SL2细胞中,NF-Y和Sp1 / Sp3具有协同作用。此外,Spl和长Sp3同工型均能激活CBS -1b最小启动子:但是,短Sp3同工型是有效的阻遏物。这些结果可能解释了CBS转录的细胞或组织特异性调节,并阐明了人类疾病和唐氏综合症中CBS基因表达改变的基础。 [参考:38]

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