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Subunit disassembly and inhibition of TNFα by a semi-synthetic bicyclic peptide

机译:半合成双环肽的亚基拆卸和抑制TNFα

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摘要

Macrocyclic peptides are potentially a source of powerful drugs, but their de novo discovery remains challenging. Here we describe the discovery of a high-affinity (Kd = 10 nM) peptide macrocycle (M21) against human tumor necrosis factor-alpha (hTNFα), a key drug target in the treatment of inflammatory disorders, directly from diverse semi-synthetic phage peptide repertoires. The bicyclic peptide M21 (ACPPCLWQVLC) comprises two loops covalently anchored to a 2,4,6-trimethyl-mesitylene core and upon binding induces disassembly of the trimeric TNFα cytokine into dimers and monomers. A 2.9 Å crystal structure of the M21/hTNFα complex reveals the peptide bound to a hTNFα dimer at a normally buried epitope in the trimer interface overlapping the binding site of a previously discovered small molecule ligand (SPD304), which also induces TNF trimer dissociation and synergizes with M21 in the inhibition of TNFα cytotoxicity. The discovery of M21 underlines the potential of semi-synthetic bicyclic peptides as ligands for the discovery of cryptic epitopes, some of which are poorly accessible to antibodies.
机译:大环肽可能是强大药物的来源,但是它们的从头发现仍然具有挑战性。在这里,我们描述了直接从多种半合成噬菌体中发现针对人类肿瘤坏死因子-α(hTNFα)的高亲和力(Kd = 10 nM)肽大环化合物(M21)的发现,后者是治疗炎症性疾病的关键药物靶标肽库。双环肽M21(ACPPCLWQVLC)包含两个共价锚定于2,4,6-三甲基-亚甲基间苯三环的环,结合后会诱导三聚体TNFα细胞因子分解为二聚体和单体。 M21 /hTNFα复合物的2.9Å晶体结构揭示了与三聚体界面中正常埋藏的表位上的hTNFα二聚体结合的肽,与先前发现的小分子配体(SPD304)的结合位点重叠,这也诱导TNF三聚体解离并在抑制TNFα细胞毒性方面与M21协同作用。 M21的发现强调了半合成双环肽作为发现隐蔽表位的配体的潜力,其中某些抗原表位难以接近抗体。

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