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微型engrailed同源结构域DNA结合特异性的光控

Photocontrol of DNA binding specificity of a miniature engrailed homeodomain.

作者信息

Guerrero Lucia, Smart Oliver S, Woolley G Andrew, Allemann Rudolf K

机构信息

School of Chemistry, Cardiff University, Main Building, Park Place, Cardiff CF10 3AT, Wales, U.K.

出版信息

J Am Chem Soc. 2005 Nov 9;127(44):15624-9. doi: 10.1021/ja0550428.

Abstract

Control of DNA binding of HDH-3, a 18-residue polypeptide based on the recognition helix of the Q50K engrailed homeodomain, has been achieved. HDH-3 was linked to an azobenzene cross-linker through two cysteine residues in an i, i + 11 spacing. For the thermodynamically stable trans configuration of the cross-linker, the dark-adapted peptide (dad-HDH-3) adopted a mainly alpha-helical structure as judged by circular dichroism (CD) spectroscopy. After irradiation with light of 360 nm, the helical content of the peptide (irrad-HDH-3) was reduced significantly and the CD spectrum of the irradiated peptide resembled that of the largely unstructured, unalkylated peptide. Despite lacking helices-1 and -2 and the N-terminal arm of Q50K engrailed, dad-HDH-3 bound to its natural DNA target sequence TAATCC (QRE) with high affinity (K(D) = 7.5 +/- 1.3 nM). The binding affinity for the mutant DNA sequence, TAATTA (ERE), was reduced significantly (K(D) = 140 +/- 11 nM). Unlike irrad-HDH-3, which like the unalkylated parent peptide displayed only marginal DNA binding specificity, dad-HDH-3 specified base pairs 5 and 6 of QRE with an accuracy rivaling that of the intact wild-type Q50K engrailed homeodomain, making dad-HDH-3 the most specific designed DNA binding miniature homeodomain reported to date. Moreover, DNA binding affinity and specificity of HDH-3 could be controlled externally by irradiation with light.

摘要

基于Q50K engrailed同源结构域识别螺旋的18个氨基酸残基的多肽HDH-3,其DNA结合已得到控制。HDH-3通过两个处于i, i + 11间距的半胱氨酸残基与偶氮苯交联剂相连。对于交联剂热力学稳定的反式构型,通过圆二色性(CD)光谱判断,暗适应肽(dad-HDH-3)主要采用α螺旋结构。用360 nm光照射后,该肽(irrad-HDH-3)的螺旋含量显著降低,照射后肽的CD光谱类似于大部分无结构、未烷基化肽的光谱。尽管dad-HDH-3缺乏Q50K engrailed的螺旋-1和-2以及N端臂,但它仍以高亲和力(K(D)=7.5±1.3 nM)与天然DNA靶序列TAATCC(QRE)结合。对突变DNA序列TAATTA(ERE)的结合亲和力显著降低(K(D)=140±11 nM)。与irrad-HDH-3不同,irrad-HDH-3与未烷基化的亲本肽一样仅表现出微弱的DNA结合特异性,而dad-HDH-3对QRE的第5和第6个碱基对的识别准确性可与完整的野生型Q50K engrailed同源结构域相媲美,这使得dad-HDH-3成为迄今为止报道的最具特异性设计的DNA结合微型同源结构域。此外,HDH-3的DNA结合亲和力和特异性可通过光照射在外部进行控制。

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