首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Downsizing human, bacterial, and viral proteins to short water-stable alpha helices that maintain biological potency
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Downsizing human, bacterial, and viral proteins to short water-stable alpha helices that maintain biological potency

机译:将人,细菌和病毒蛋白缩小尺寸,以缩短水稳定性的α螺旋,从而保持生物效力

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摘要

Recombinant proteins are important therapeutics due to potent, highly specific, and nontoxic actions in vivo. However, they are expensive medicines to manufacture, chemically unstable, and difficult to administer with low patient uptake and compliance. Small molecule drugs are cheaper and more bioavailable, but less target-specific in vivo and often have associated side effects. Here we combine some advantages of proteins and small molecules by taking short amino acid sequences that confer potency and selectivity to proteins, and fixing them as small constrained molecules that are chemically and structurally stable and easy to make. Proteins often use short a-helices of just 1-4 helical turns (4-15 amino acids) to interact with biological targets, but peptides this short usually have negligible a-helicity in water. Here we show that short peptides, corresponding to helical epitopes from viral, bacterial, or human proteins, can be strategically fixed in highly a-helical structures in water. These helix-constrained compounds have similar biological potencies as proteins that bear the same helical sequences. Examples are (ⅰ) a picomolar inhibitor of Respiratory Syncytial Virus F protein mediated fusion with host cells, (ⅱ ) a nano-molar inhibitor of RNA binding to the transporter protein HIV-Rev, (ⅲ ) a submicromolar inhibitor of Streptococcus pneumoniae growth induced by quorum sensing pheromone Competence Stimulating Peptide, and (ⅳ) a picomolar agonist of the GPCR pain receptor opioid receptor like receptor ORL-1. This approach can be generally applicable to downsizing helical regions of proteins with broad applications to biology and medicine.
机译:由于体内有效,高度特异性和无毒的作用,重组蛋白是重要的治疗方法。然而,它们是制造昂贵的药物,化学上不稳定,并且在患者摄取和依从性低的情况下难以给药。小分子药物较便宜且具有更高的生物利用度,但体内的靶标特异性较低,并且通常具有相关的副作用。在这里,我们将蛋白质和小分子的一些优势结合在一起,方法是采用短的氨基酸序列来赋予蛋白质以强效和选择性,并将它们固定为化学和结构稳定且易于制造的小分子。蛋白质通常使用仅1-4螺旋圈(4-15个氨基酸)的短a螺旋与生物靶标相互作用,但是这种短肽通常在水中的a螺旋可忽略不计。在这里,我们显示了与来自病毒,细菌或人蛋白质的螺旋表位相对应的短肽,可以策略性地固定在水中高度α-螺旋的结构中。这些受螺旋约束的化合物与具有相同螺旋序列的蛋白质具有相似的生物学效能。实例是(ⅰ)呼吸道合胞病毒F蛋白介导的与宿主细胞融合的皮摩尔抑制剂,(ⅱ)与转运蛋白HIV-Rev结合的RNA的纳摩尔抑制剂,(ⅲ)肺炎链球菌生长诱导的亚微摩尔抑制剂(9)通过GPCR疼痛受体阿片样受体(如受体ORL-1)的皮摩尔激动剂来定性地检测信息素能力刺激肽。这种方法通常可用于缩小蛋白质的螺旋区域,在生物学和医学领域具有广泛的应用。

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  • 作者单位

    Division of Chemistry and Structural Biology, Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland 4072, Australia;

    rnDivision of Chemistry and Structural Biology, Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland 4072, Australia;

    rnDivision of Chemistry and Structural Biology, Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland 4072, Australia;

    rnDivision of Chemistry and Structural Biology, Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland 4072, Australia;

    rnDivision of Chemistry and Structural Biology, Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland 4072, Australia;

    rnDivision of Chemistry and Structural Biology, Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland 4072, Australia;

    rnSchool of Chemistry and Molecular Biosciences, The University of Queensland, Brisbane, Queensland 4072, Australia;

    rnSchool of Chemistry and Molecular Biosciences, The University of Queensland, Brisbane, Queensland 4072, Australia;

    rnDivision of Chemistry and Structural Biology, Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland 4072, Australia;

    rnDivision of Chemistry and Structural Biology, Institute for Molecular Bioscience, The University of Queensland, Brisbane, Queensland 4072, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    helix; inhibitor; structure; mimetic; anti-infective;

    机译:螺旋;抑制剂结构体;模仿抗感染;
  • 入库时间 2022-08-18 00:41:21

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