Glenn Matthew P, Fairlie David P
Centre for Drug Design and Development, Institute for Molecular Bioscience, University of Queensland, Brisbane, Qld 4072, Australia.
Mini Rev Med Chem. 2002 Oct;2(5):433-45. doi: 10.2174/1389557023405747.
Bioactive structures of peptides represent important clues for drug discovery and development although peptides themselves have substantial limitations as drugs. One promising approach to overcoming the limitations of peptides is to progressively replace amide bonds in peptides with non-peptidic constraints that bring drug-like properties like stability and bioavailability to the molecules. These constraints can also be used to mould molecules into shapes which mimic key elements of protein secondary structure that confer bioactivity to protein surfaces. Preorganizing a molecule into the shape recognized by a receptor results in high affinity binding though a considerable entropy saving and is an effective approach to engineering highly bioactive drug leads. One peptide structure, the extended beta strand, has only recently been identified as a fundamental recognition element in physiological processes. Relatively few molecules have been described as constrained mimics of extended peptide conformations. We now summarize some approaches to mimicking peptide beta strands, and illustrate these with examples of bioactive, stable and bioavailable molecules that are conformationally biased to mimic the extended peptide beta strand.
尽管肽本身作为药物有很大局限性,但肽的生物活性结构是药物发现和开发的重要线索。克服肽局限性的一种有前景的方法是逐步用非肽类限制取代肽中的酰胺键,这些限制能赋予分子类似药物的性质,如稳定性和生物利用度。这些限制还可用于将分子塑造成模仿蛋白质二级结构关键元素的形状,这些关键元素赋予蛋白质表面生物活性。通过显著节省熵将分子预组织成受体识别的形状会导致高亲和力结合,这是设计高生物活性药物先导物的有效方法。一种肽结构,即延伸的β链,直到最近才被确定为生理过程中的基本识别元件。相对较少的分子被描述为延伸肽构象的受限模拟物。我们现在总结一些模拟肽β链的方法,并用一些生物活性、稳定且具有生物利用度的分子实例进行说明,这些分子在构象上倾向于模拟延伸肽β链。