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Substitution of DNA-Contacting Amino Acids with Functional Variants in the Gata-1 Zinc Finger: A Structurally and Phylogenetically Guided Mutagenesis

机译:Gata-1锌指中具有功能变体的DNA接触氨基酸的替代:结构和系统发育指导的诱变。

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摘要

DNA binding functionality among transcription factor proteins is afforded by a number of structural motifs, such as the helix-turn-helix, helix-loop-helix, and zinc finger domains. The common thread among these diverse structures is their sequence-specific binding to essential promoter or other genetic regulatory sequences with high selectivity and affinity. One such motif, present in a wide range of organisms from bacteria to vertebrates, is the Gata-type zinc finger. This family of DNA-binding proteins is characterized by the presence of one or two (Cys)4 metal binding sites which recognize the protein’s eponymous binding site, GATA. Unlike other conserved DNA binding domains, Gata proteins appear to be restricted to binding consensus GATA sequences, or near variations, in DNA. Since the architecture of the Gata finger seems built around recognizing this particular sequence, we set out to define the allowable range of amino acid substitutions along the DNA-binding surface of a Gata finger that could continue to support sequence specific DNA binding activity. Accordingly, we set up a one-hybrid screen in yeast based on the chicken Gata-1 C-terminal zinc finger. Mutant libraries were generated at five amino acids identified in the Gata-DNA structure as likely to mediate sequence-specific contacts between the Gata finger and DNA. These libraries were designed to give as exhaustive amino acid coverage as possible such that almost all alternative amino acids were screened at each of the five probed positions. Screening and characterization of these libraries revealed several functional amino acid substitutions at two leucines which contact the DNA at the 3’ and 5’ flanks of the GATA binding site, but no functional substituents for amino acids near the core of the binding site. This pattern is consistent with amino acid sequences of known DNA-binding Gata fingers.
机译:转录因子蛋白之间的DNA结合功能由许多结构基序提供,例如螺旋-转-螺旋,螺旋-环-螺旋和锌指结构域。这些不同结构之间的共同点是它们以高选择性和亲和力与基本启动子或其他遗传调控序列的序列特异性结合。 Gata型锌指就是这样一种基序,存在于从细菌到脊椎动物的各种生物中。这种DNA结合蛋白家族的特征是存在一个或两个(Cys)4金属结合位点,它们识别该蛋白的同名结合位点GATA。与其他保守的DNA结合域不同,Gata蛋白似乎仅限于结合DNA中的共有GATA序列或接近变异。由于Gata手指的结构似乎是围绕识别该特定序列而建立的,因此我们着手定义沿Gata手指的DNA结合表面可继续支持序列特异性DNA结合活性的氨基酸取代的允许范围。因此,我们在鸡Gata-1 C末端锌指的基础上在酵母中建立了一个混合杂交屏幕。在Gata-DNA结构中鉴定为可能介导Gata手指与DNA之间的序列特异性接触的五个氨基酸处生成了突变文库。设计这些文库以提供尽可能详尽的氨基酸覆盖范围,以便在五个探针位置的每一个位置筛选几乎所有替代氨基酸。这些文库的筛选和表征显示,在两个亮氨酸上有几个功能性氨基酸取代,它们在GATA结合位点的3'和5'侧面接触DNA,但在结合位点核心附近没有氨基酸的功能性取代基。该模式与已知的结合DNA的Gata指的氨基酸序列一致。

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