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首页> 外文期刊>Central nervous system agents in medicinal chemistry >Functional Role of beta-Turn in Polypeptide Structure and its use as Template to Design Therapeutic Agents
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Functional Role of beta-Turn in Polypeptide Structure and its use as Template to Design Therapeutic Agents

机译:β-Turn在多肽结构中的功能作用及其作为模板设计治疗药物的用途

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摘要

Since proteins and peptides play critical roles in many biological phenomena, their use as drugs is of great interest. However, their development is limited due to their poor bioavailability, antigenicity and unfavorable pharmacokinetics. In the majority of cases, not all domains of proteins are essential protein-protein interactions necessary for biological activities but only small regions of their folded structure, perform the interactions. Usually, these particular secondary structures are beta-turns, occurring on the exposed surface of proteins, constitute the functional elements involved in molecular recognition processes between proteins, and in interactions between ligands and receptors. Moreover, there are also several examples of the design of modified peptides as therapeutic agents by mimicking beta-turn structures. In view of this, this review will be focused on the importance of beta-turn in some biological phenomena, such as prohormone prote-olytic processing. This report will also address the use of beta-turn mimicking strategies and its application in the design of potent peptide analogues which play an equally important role. Due to the optimal surface conformation, beta-turn mimetics lead to productive interaction with receptors and antibodies.
机译:由于蛋白质和肽在许多生物学现象中起着至关重要的作用,因此将其作为药物的用途引起了极大的兴趣。然而,由于其生物利用度,抗原性和不良的药物动力学,它们的发展受到限制。在大多数情况下,并非蛋白质的所有结构域都是生物学活性必需的必需蛋白质-蛋白质相互作用,只有折叠结构的小区域才能进行相互作用。通常,这些特定的二级结构是发生在蛋白质暴露表面的β-转角,构成参与蛋白质之间分子识别过程以及配体与受体之间相互作用的功能元件。此外,还存在通过模仿β-转角结构设计修饰的肽作为治疗剂的几个实例。有鉴于此,本文将重点探讨β-转角在某些生物现象(如激素激素蛋白水解加工)中的重要性。该报告还将探讨β-转弯模仿策略的使用及其在设计中发挥同样重要作用的有效肽类似物的应用。由于具有最佳的表面构象,β转角模拟物可导致与受体和抗体的有效相互作用。

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