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Role for first zinc finger of WT1 in DNA sequence specificity: Denys–Drash syndrome-associated WT1 mutant in ZF1 enhances affinity for a subset of WT1 binding sites

机译:WT1的第一个锌指在DNA序列特异性中的作用:ZF1中与Denys-Drash综合症相关的WT1突变体增强了对WT1结合位点的一部分的亲和力

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Wilms tumor protein (WT1) is a Cys2-His2 zinc-finger transcription factor vital for embryonic development of the genitourinary system. The protein contains a C-terminal DNA binding domain with four tandem zinc-fingers (ZF1–4). An alternative splicing of Wt1 can add three additional amino acids—lysine (K), threonine (T) and serine (S)—between ZF3 and ZF4. In the ?KTS isoform, ZF2–4 determine the sequence-specificity of DNA binding, whereas the function of ZF1 remains elusive. Three X-ray structures are described here for wild-type ?KTS isoform ZF1–4 in complex with its cognate DNA sequence. We observed four unique ZF1 conformations. First, like ZF2–4, ZF1 can be positioned continuously in the DNA major groove forming a ‘near-cognate’ complex. Second, while ZF2–4 make base-specific interactions with one DNA molecule, ZF1 can interact with a second DNA molecule (or, presumably, two regions of the same DNA molecule). Third, ZF1 can intercalate at the joint of two tail-to-head DNA molecules. If such intercalation occurs on a continuous DNA molecule, it would kink the DNA at the ZF1 binding site. Fourth, two ZF1 units can dimerize. Furthermore, we examined a Denys–Drash syndrome-associated ZF1 mutation (methionine at position 342 is replaced by arginine). This mutation enhances WT1 affinity for a guanine base. X-ray crystallography of the mutant in complex with its preferred sequence revealed the interactions responsible for this affinity change. These results provide insight into the mechanisms of action of WT1, and clarify the fact that ZF1 plays a role in determining sequence specificity of this critical transcription factor.
机译:Wilms肿瘤蛋白(WT1)是Cys2-His2锌指转录因子,对泌尿生殖系统的胚胎发育至关重要。该蛋白包含一个带有四个串联锌指(ZF1-4)的C端DNA结合域。 Wt1的替代剪接可以在ZF3和ZF4之间添加三个额外的氨基酸-赖氨酸(K),苏氨酸(T)和丝氨酸(S)。在?KTS同工型中,ZF2-4确定DNA结合的序列特异性,而ZF1的功能仍然难以捉摸。此处描述了野生型?KTS同工型ZF1-4的三个X射线结构及其相关的DNA序列。我们观察到四个独特的ZF1构象。首先,与ZF2-4一样,ZF1可以连续定位在DNA大槽中,形成“近同源”复合体。第二,虽然ZF2-4与一个DNA分子发生碱基特异性相互作用,但ZF1可以与第二个DNA分子(或者可能是同一DNA分子的两个区域)相互作用。第三,ZF1可以插入两个尾对头DNA分子的连接处。如果这种插入发生在连续的DNA分子上,它将在ZF1结合位点扭结DNA。第四,两个ZF1单元可以二聚。此外,我们检查了与Denys-Drash综合征相关的ZF1突变(第342位的蛋氨酸被精氨酸取代)。该突变增强了WT1对鸟嘌呤碱基的亲和力。突变体及其优选序列的X射线晶体学分析揭示了造成这种亲和力变化的相互作用。这些结果提供了对WT1的作用机制的见解,并阐明了ZF1在确定该关键转录因子的序列特异性中起着作用的事实。

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