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High-affinity adaptors for switchable recognition of histidine-tagged proteins

机译:高亲和力衔接子,用于可识别组氨酸标签的蛋白质

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摘要

We aspired to create chemical recognition units, which bind oligohistidine tags with high affinity and stability, as tools for selectively attaching spectroscopic probes and other functional elements to recombinant proteins. Several supramolecular entities containing 2-4 nitrilotriacetic acid (NTA) moieties were synthesized, which additionally contained an amino group, to which fluorescein was coupled as a sensitive reporter probe. These multivalent chelator heads (MCH) (termed bis-, tris-, and tetrakis-NTA) were characterized with respect to their interaction with hexahistidine (H6)- and decahistidine (H10)-tagged targets. Substantially increased binding stability with increasing number of NTA moieties was observed by analytical size exclusion chromatography. The binding enthalpies as determined by isothermal titration calorimetry increased nearly additively with the number of possible coordinative bonds between chelator heads and tags. Yet, a substantial excess of histidines in the oligohistidine tag was required for obtaining fully additive binding enthalpies. Dissociation kinetics of MCH/oligohistidine complexes measured by fluorescence dequenching showed an increase in stability by 4 orders of magnitude compared to that of mono-NTA, and subnanomolar affinity was reached for tris-NTA. The gain in free energy with increasing multivalency was accompanied by an increasing loss of entropy, which was ascribed to the high flexibility of the binding partners. Numerous applications of these MCHs for noncovalent, high affinity, yet reversible tethering of spectroscopic probes and other functional elements to the recombinant proteins can be envisioned.
机译:我们希望创建化学识别单元,该单元以高亲和力和稳定性结合寡聚组氨酸标签,作为选择性地将光谱探针和其他功能元件连接到重组蛋白的工具。合成了包含2-4个次氮基三乙酸(NTA)部分的几个超分子实体,其中还包含一个氨基,荧光素偶联到该氨基上作为敏感的报告探针。这些多价螯合剂头部(MCH)(称为bis-,tris-和tetrakis-NTA)的特征是它们与六组氨酸(H6)和十组氨酸(H10)标记的靶标相互作用。通过分析尺寸排阻色谱观察到随着NTA部分数目的增加,结合稳定性显着增加。通过等温滴定热法测定的结合焓随着螯合剂头和标签之间可能的配位键数量的增加几乎增加。然而,寡聚组氨酸标签中需要大量过量的组氨酸以获得完全加和的结合焓。与单-NTA相比,通过荧光猝灭测量的MCH /寡组氨酸复合物的离解动力学显示出稳定性增加了4个数量级,并且对tris-NTA的亚纳摩尔亲和力达到了。随着多价态的增加,自由能的增加伴随着熵的增加,这归因于结合伴侣的高度灵活性。可以设想将这些MCH用于光谱探针和其他功能元件的非共价,高亲和力但可逆的束缚于重组蛋白。

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