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大环肽类人胰α-淀粉酶抑制剂中环化与结合的比较。

Folding Then Binding vs Folding Through Binding in Macrocyclic Peptide Inhibitors of Human Pancreatic α-Amylase.

机构信息

Department of Chemical Biology and Drug Discovery , Utrecht Institute of Pharmaceutical Sciences, Utrecht University , 3584 CG Utrecht , The Netherlands.

出版信息

ACS Chem Biol. 2019 Aug 16;14(8):1751-1759. doi: 10.1021/acschembio.9b00290. Epub 2019 Jul 19.

Abstract

macrocyclic peptides, derived using selection technologies such as phage and mRNA display, present unique and unexpected solutions to challenging biological problems. This is due in part to their unusual folds, which are able to present side chains in ways not available to canonical structures such as α-helices and β-sheets. Despite much recent interest in these molecules, their folding and binding behavior remains poorly characterized. In this work, we present cocrystallization, docking, and solution NMR structures of three macrocyclic peptides that all bind as competitive inhibitors with single-digit nanomolar to the active site of human pancreatic α-amylase. We show that a short stably folded motif in one of these is nucleated by internal hydrophobic interactions in an otherwise dynamic conformation in solution. Comparison of the solution structures with a target-bound structure from docking indicates that stabilization of the bound conformation is provided through interactions with the target protein after binding. These three structures also reveal a surprising functional convergence to present a motif of a single arginine sandwiched between two aromatic residues in the interactions of the peptide with the key catalytic residues of the enzyme, despite little to no other structural homology. Our results suggest that intramolecular hydrophobic interactions are important for priming binding of small macrocyclic peptides to their target and that high rigidity is not necessary for high affinity.

摘要

大环肽是使用噬菌体和 mRNA 展示等选择技术衍生出来的,为具有挑战性的生物学问题提供了独特且意想不到的解决方案。这在一定程度上是由于它们不寻常的折叠方式,这些折叠方式能够以α-螺旋和β-折叠等典型结构所无法实现的方式呈现侧链。尽管最近人们对这些分子产生了浓厚的兴趣,但它们的折叠和结合行为仍然知之甚少。在这项工作中,我们展示了三个大环肽的共结晶、对接和溶液 NMR 结构,它们都作为竞争性抑制剂以纳摩尔级的亲和力与人类胰腺α-淀粉酶的活性位点结合。我们表明,其中一个肽的一个短的稳定折叠基序是由内部疏水相互作用在溶液中原本动态构象中引发的。将溶液结构与对接的靶标结合结构进行比较表明,结合构象的稳定性是通过与靶蛋白结合后的相互作用提供的。这三个结构还揭示了一个令人惊讶的功能趋同,即肽与酶的关键催化残基相互作用时,呈现一个单一精氨酸夹在两个芳香族残基之间的基序,尽管没有其他结构同源性。我们的结果表明,分子内疏水相互作用对于小分子大环肽与靶标的结合具有重要意义,并且高刚性对于高亲和力不是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fcf/6700688/0fdaf0501fc5/cb-2019-00290q_0005.jpg

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