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一项双重相互作用筛选鉴定出了ftz基因的正负调控因子以及与ftz相互作用的蛋白质。

A double interaction screen identifies positive and negative ftz gene regulators and ftz-interacting proteins.

作者信息

Yu Y, Yussa M, Song J, Hirsch J, Pick L

机构信息

The Brookdale Center of the Department of Biochemistry and Molecular Biology, Mount Sinai School of Medicine, One Gustave L. Levy Place, New York, NY 10029, USA.

出版信息

Mech Dev. 1999 May;83(1-2):95-105. doi: 10.1016/s0925-4773(99)00038-6.

Abstract

Regulatory genes directing embryonic development are expressed in complex patterns. The Drosophila homeobox gene fushi tarazu (ftz) is expressed in a striped pattern that is controlled by several discrete and large cis- regulatory elements. One key cis-element is the ftz proximal enhancer which is required for stripe establishment and which mediates autoregulation by direct binding of Ftz protein. To identify the trans-acting factors that regulate ftz expression and autoregulation, we developed a modified yeast two hybrid screen, the Double Interaction Screen (DIS). The DIS was designed to isolate both DNA binding transcriptional regulators that interact with the proximal enhancer and proteins that interact with Ftz itself when it is bound to the enhancer. The screen identified two candidate Ftz protein cofactors as well as activators and repressors of ftz transcription that bind directly to the enhancer. One of these (Tramtrack (Ttk)) was previously shown to bind to at least five sites in the proximal enhancer; genetic studies suggested that Ttk acts as a repressor of ftz in the embryo. Here we show that, in yeast cells, Ttk protein strongly activates transcription, suggesting that yeast may be missing a necessary co-repressor which is present in Drosophila embryos. Further, we have characterized the activity of a second candidate ftz repressor isolated in the screen - the product of the pair-rule gene sloppy paired - a member of the forkhead family. We show that Slp1 is a DNA binding protein. We have identified a high affinity binding site for Slp1 in the ftz proximal enhancer. Slp1 represses transcription via this binding site in yeast cells, consistent with its role as a direct repressor of ftz stripes in interstripe regions during late stages of embryogenesis. The DIS should be a generally useful method to identify DNA binding transcriptional regulators and protein partners of previously characterized DNA binding proteins.

摘要

指导胚胎发育的调控基因以复杂的模式表达。果蝇同源异型框基因“分节基因”(ftz)以条纹模式表达,该模式由几个离散的大的顺式调控元件控制。一个关键的顺式元件是ftz近端增强子,它是条纹形成所必需的,并且通过Ftz蛋白的直接结合介导自我调节。为了鉴定调节ftz表达和自我调节的反式作用因子,我们开发了一种改良的酵母双杂交筛选方法,即双相互作用筛选(DIS)。DIS旨在分离与近端增强子相互作用的DNA结合转录调节因子以及与结合在增强子上的Ftz本身相互作用的蛋白质。该筛选鉴定出了两个候选的Ftz蛋白辅因子以及直接结合到增强子上的ftz转录激活因子和抑制因子。其中一个(Tramtrack(Ttk))先前已被证明可结合近端增强子中的至少五个位点;遗传学研究表明,Ttk在胚胎中作为ftz的抑制因子起作用。在此我们表明,在酵母细胞中,Ttk蛋白强烈激活转录,这表明酵母可能缺少果蝇胚胎中存在的一种必需的共抑制因子。此外,我们已经对筛选中分离出的第二个候选ftz抑制因子的活性进行了表征——配对规则基因“不精确配对”的产物——叉头家族的一员。我们表明Slp1是一种DNA结合蛋白。我们在ftz近端增强子中鉴定出了一个Slp1的高亲和力结合位点。Slp1通过酵母细胞中的这个结合位点抑制转录,这与其在胚胎发育后期条纹间区域作为ftz条纹的直接抑制因子的作用一致。DIS应该是一种普遍有用的方法,用于鉴定DNA结合转录调节因子以及先前已表征的DNA结合蛋白的蛋白质伴侣。

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