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Rational design of an estrogen receptor mutant with altered DNA-binding specificity

机译:DNA结合特异性改变的雌激素受体突变体的合理设计

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摘要

Although artificial C2-H2 zinc fingers can be designed to recognize specific DNA sequences, it remains unclear to which extent nuclear receptor C4 zinc fingers can be tailored to bind novel DNA elements. Steroid receptors bind as dimers to palindromic response elements differing in the two central base pairs of repeated motifs. Predictions based on one amino acid—one base-pair relationships may not apply to estrogen receptors (ERs), which recognize the two central base pairs of estrogen response elements (EREs) via two charged amino acids, each contacting two bases on opposite DNA strands. Mutagenesis of these residues, E203 and K210 in ERα, indicated that both contribute to ERE binding. Removal of the electric charge and steric constraints associated with K210 was required for full loss of parental DNA-binding specificity and recognition of novel sequences by E203 mutants. Although some of the new binding profiles did not match predictions, the double mutation E203R-K210A generated as predicted a mutant ER that was transcriptionally active on palindromes of PuGCTCA motifs, but not on consensus EREs. This study demonstrates the feasibility of designing C4 zinc finger mutants with novel DNA-binding specificity, but also uncovers limitations of this approach.
机译:尽管可以将人工C2-H2锌指设计为识别特定的DNA序列,但尚不清楚可以将核受体C4锌指定制到何种程度以结合新的DNA元素。类固醇受体作为二聚体结合回文反应元件,该元件在重复基序的两个中心碱基对中不同。基于一个氨基酸-一个碱基对的关系的预测可能不适用于雌激素受体(ER),后者通过两个带电荷的氨基酸识别两个中心碱基对的雌激素反应元件(ERE),每个氨基酸都接触相对DNA链上的两个碱基。这些残基(ERα中的E203和K210)的诱变表明它们都有助于ERE结合。完全失去亲本DNA结合特异性和E203突变体识别新序列需要去除与K210相关的电荷和空间约束。尽管某些新的结合图谱与预测结果不符,但双突变E203R-K210A如预测的那样产生了一个突变ER,其在PuGCTCA基元的回文中具有转录活性,但对共有ERE却不起作用。这项研究证明了设计具有新型DNA结合特异性的C4锌指突变体的可行性,但也揭示了该方法的局限性。

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