首页> 美国卫生研究院文献>Nucleic Acids Research >Two mutually exclusive regulatory systems inhibit UASGATA a cluster of 5-GAT(A/T)A-3 upstream from the UGA4 gene of Saccharomyces cerevisiae.
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Two mutually exclusive regulatory systems inhibit UASGATA a cluster of 5-GAT(A/T)A-3 upstream from the UGA4 gene of Saccharomyces cerevisiae.

机译:两个相互排斥的调节系统抑制UASGATA这是酿酒酵母UGA4基因上游的5-GAT(A / T)A-3簇。

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摘要

The S. cerevisiae Uga43(Dal80) protein down-regulates the expression of multiple nitrogen pathway genes. It contains a zinc-finger motif similar to the DNA-binding domain of the vertebrate GATA family of transcription factors; this domain is known to direct binding to 5'-GATA-3' core sequences. The inducible UGA4 gene, which encodes the specific gamma-aminobutyrate permease, undergoes strong repression by Uga43p. This study shows that the 5' region of UGA4 contains a UAS element made of four directly repeated 5'-CGAT(A/T) AG-3' sequences. This element, called UASGATA, can potentially confer to the UGA4 gene high-level expression in the absence of inducer, but this potential activity is inhibited by two distinct repression systems. One system is Uga43p-dependent; it operates in cells grown on a poor nitrogen source. The other is the nitrogen repression system, which relies on Ure2p and glutamine and operates when a good nitrogen source is present. Nitrogen repression also blocks the synthesis of Uga43p, making the two repression systems mutually exclusive. Previous studies have shown that expression supported by 5'-GATA-3'-containing UAS elements requires Gln3p, another global nitrogen regulatory factor containing a GATA zinc-finger domain. Although Gln3p contributes to UASGATA activity, evidence suggests that a second factor can potentially direct expression through UASGATA. Expression conferred by this putative factor is subject to both Uga43p- and Ure2p-mediated repression. The role of UASGATA in the expression of the UGA4 gene is discussed in relation to its sensitivity to the two distinct repression systems.
机译:酿酒酵母Uga43(Dal80)蛋白下调多个氮途径基因的表达。它含有一个锌指基序,类似于脊椎动物GATA转录因子家族的DNA结合域。已知该结构域直接结合至5'-GATA-3'核心序列。编码特定的γ-氨基丁酸通透酶的可诱导UGA4基因受到Uga43p的强烈抑制。这项研究表明,UGA4的5'区域包含一个由四个直接重复的5'-CGAT(A / T)AG-3'序列组成的UAS元素。在没有诱导剂的情况下,称为UASGATA的这一元件可能会赋予UGA4基因高水平表达,但这种潜在的活性受到两个截然不同的阻抑系统的抑制。一种系统是Uga43p依赖性的;它在贫氮源中生长的细胞中运作。另一个是氮抑制系统,该系统依赖于Ure2p和谷氨酰胺,并在存在良好氮源时运行。氮抑制还阻止了Uga43p的合成,使两个抑制系统相互排斥。先前的研究表明,由含5'-GATA-3'的UAS元件支持的表达需要Gln3p,Gln3p是另一种含有GATA锌指结构域的全局氮调节因子。尽管Gln3p有助于UASGATA活性,但证据表明第二个因素可能通过UASGATA指导表达。该推定因子赋予的表达受Uga43p和Ure2p介导的抑制。讨论了UASGATA在UGA4基因表达中的作用,以及它对两个不同抑制系统的敏感性。

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