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首页> 外文期刊>Bioconjugate Chemistry >Assessing Interactions between Helical Aromatic Oligoamide Foldamers and Protein Surfaces: A Tethering Approach
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Assessing Interactions between Helical Aromatic Oligoamide Foldamers and Protein Surfaces: A Tethering Approach

机译:评估螺旋芳族寡聚酰胺糊涂虫和蛋白质表面之间的相互作用:束缚方法

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摘要

Helically folded aromatic foldamers may constitute suitable candidates for the ab initio design of ligands for protein surfaces. As preliminary steps toward the exploration of this hypothesis, a tethering approach was developed to detect interactions between a protein and a foldamer by confining the former at the surface of the latter. Cysteine mutants of two therapeutically relevant enzymes, CypA and IL4, were produced. Two series of ten foldamers were synthesized bearing different proteinogenic side chains and either a long or a short linker functionalized with an activated disulfide. Disulfide exchange between the mutated cysteines and the activated disulfides yielded 20 foldamer-IL4 and 20 foldamer-CypA adducts. Effectiveness of the reaction was demonstrated by LC-MS, by MS analysis after proteolytic digestion, and by 2D NMR. Circular dichroism then revealed diastereoselective interactions between the proteins and the foldamers confined at their surface which resulted in a preferred handedness of the foldamer helix. Helix sense bias occurred sometimes with both the short and the long linkers and sometimes with only one of them. In a few cases, helix handedness preference is found to be close to quantitative. These cases constitute valid candidates for structural elucidation of the interactions involved.
机译:螺旋折叠的芳族糊涂虫可构成蛋白质表面配体的AB初始设计的合适候选者。作为对该假设探索的初步步骤,开发了一种束缚方法以通过将前者在后者的表面上限制前者来检测蛋白质和卷曲物之间的相互作用。产生两种治疗相关酶,CYPA和IL4的半胱氨酸突变体。合成两种10系列的含有不同的蛋白质侧链和用活化的二硫键官能化的长或短的连接器。突变的半胱氨酸和活化二硫化物之间的二硫化物交换产生20个粘合剂-114和20种粘合剂 - CYPA加合物。通过LC-MS,通过MS分析在蛋白水解消化后和2D NMR后对反应的有效性。然后循环二色性揭示蛋白质和粘合剂之间的非对映选择性相互作用,围绕它们的表面限制,导致粘合剂螺旋的优选用手。螺旋感测偏见有时会发生短路和长链接,有时只有其中一个。在几个情况下,发现螺旋手偏好偏好接近定量。这些案件构成了有效的候选人,用于结构阐明所涉及的相互作用。

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  • 来源
    《Bioconjugate Chemistry》 |2019年第1期|共9页
  • 作者单位

    Univ Bordeau Inst Europeen Chim &

    Biol CNRS IPB CBMN UMR 5248 2 Rue Robert Escarpit F-33600 Pessac France;

    Univ Bordeau Inst Europeen Chim &

    Biol CNRS IPB CBMN UMR 5248 2 Rue Robert Escarpit F-33600 Pessac France;

    Univ Bordeau Inst Europeen Chim &

    Biol CNRS IPB CBMN UMR 5248 2 Rue Robert Escarpit F-33600 Pessac France;

    Univ Bordeau Inst Europeen Chim &

    Biol CNRS IPB CBMN UMR 5248 2 Rue Robert Escarpit F-33600 Pessac France;

    Univ Bordeau Inst Europeen Chim &

    Biol CNRS IPB CBMN UMR 5248 2 Rue Robert Escarpit F-33600 Pessac France;

    Univ Bordeau Inst Europeen Chim &

    Biol CNRS IPB CBMN UMR 5248 2 Rue Robert Escarpit F-33600 Pessac France;

    Univ Bordeau Inst Europeen Chim &

    Biol CNRS IPB CBMN UMR 5248 2 Rue Robert Escarpit F-33600 Pessac France;

    Univ Bordeau Inst Europeen Chim &

    Biol CNRS IPB CBMN UMR 5248 2 Rue Robert Escarpit F-33600 Pessac France;

    Univ Bordeaux INSEAM Inst Europeen Chim &

    Biol CNRS ARNA U 1212 &

    UMR 5320 2 Rue Robert Escarpit F-33600 Pessac France;

    Univ Bordeau Inst Europeen Chim &

    Biol CNRS IPB CBMN UMR 5248 2 Rue Robert Escarpit F-33600 Pessac France;

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  • 正文语种 eng
  • 中图分类 生物化学;
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