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乳糖阻遏蛋白与操纵基因的相互作用:与DNA形成复合物时N端肽主链的1H和15N化学位移

Lac repressor-operator interaction: N-terminal peptide backbone 1H and 15N chemical shifts upon complex formation with DNA.

作者信息

Artz P G, Valentine K G, Opella S J, Lu P

机构信息

Department of Chemistry, Albright College, Reading, PA 19612-5234, USA.

出版信息

J Mol Recognit. 1996 Jan-Feb;9(1):13-22. doi: 10.1002/(sici)1099-1352(199601)9:1<13::aid-jmr234>3.0.co;2-t.

DOI:10.1002/(sici)1099-1352(199601)9:1<13::aid-jmr234>3.0.co;2-t
PMID:8723315
Abstract

When the lac repressor tetramer is bound to its DNA operator, methylation protection shows the nearly symmetric operator half-sites are contracted asymmetrically. This asymmetric binding results from the DNA sequence/structure. The reported structure of lac repressor N-terminal fragment and an 11 base-pair operator left half-site provides no information concerning the effect of asymmetric binding, from left operator half-site to right half-site, upon the polypeptide backbone. We isolated uniformly 15N labeled 56 amino acid wild-type (HP56WT) and 64 residue mutant [Pro3 > Tyr3] (HP64tyr3) lac repressor N-terminal DNA binding fragments for 1H/15N NMR studies with the left and right operators separately. Spectral coincidence of these longer fragments, indicating structural similarity with a protease derived 51 amino acid fragment for which the amide correlations are assigned, allows for assignment of the common amide resonances. For both HP56WT and HP64tyr3, spectral overlap of the amide correlation peaks reveals the polypeptide backbones of the uncomplexed polypeptides are structurally similar. Likewise the complexes of the peptides to the 11 base-pair lac left operator half-site are similar. On the other hand, complexes of HP56WT and the left compared to the right lac operator half-site show different residues of the polypeptide are affected by binding different half-sites of the operator. Thus, the DNA sequence/structure transmits asymmetry to the polypeptide backbone of the interacting protein.

摘要

当乳糖阻遏蛋白四聚体与其DNA操纵基因结合时,甲基化保护显示近乎对称的操纵基因半位点不对称地收缩。这种不对称结合是由DNA序列/结构导致的。已报道的乳糖阻遏蛋白N端片段与11个碱基对的操纵基因左半位点的结构,并未提供关于从操纵基因左半位点到右半位点的不对称结合对多肽主链影响的信息。我们分别分离出均匀标记15N的56个氨基酸的野生型(HP56WT)和64个残基的突变体[Pro3 > Tyr3](HP64tyr3)乳糖阻遏蛋白N端DNA结合片段,用于与左、右操纵基因进行1H/15N NMR研究。这些较长片段的光谱重合,表明其与一个酰胺相关性已被确定的蛋白酶衍生的51个氨基酸片段在结构上相似,从而能够确定常见酰胺共振峰。对于HP56WT和HP64tyr3,酰胺相关峰的光谱重叠表明未结合多肽的多肽主链在结构上相似。同样,这些肽与11个碱基对的乳糖操纵基因左半位点的复合物也相似。另一方面,HP56WT与乳糖操纵基因左半位点而非右半位点形成的复合物显示,多肽的不同残基受到操纵基因不同半位点结合的影响。因此,DNA序列/结构将不对称性传递给了相互作用蛋白的多肽主链。

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Lac repressor-operator interaction: N-terminal peptide backbone 1H and 15N chemical shifts upon complex formation with DNA.乳糖阻遏蛋白与操纵基因的相互作用:与DNA形成复合物时N端肽主链的1H和15N化学位移
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