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鉴定一种靶向参与胰腺腺癌的固有无序蛋白的药物靶标。

Identification of a Drug Targeting an Intrinsically Disordered Protein Involved in Pancreatic Adenocarcinoma.

机构信息

Instituto de Biología Molecular y Celular, Universidad Miguel Hernández, Edificio Torregaitán, Avda. del Ferrocarril s/n, 03202 Elche, Alicante, Spain.

Instituto de Biocomputación y Física de Sistemas Complejos (BIFI), Unidad Asociada IQFR-CSIC-BIFI, Universidad de Zaragoza, Edificio I+D, Mariano Esquillor s/n, 50018 Zaragoza, Spain.

出版信息

Sci Rep. 2017 Jan 5;7:39732. doi: 10.1038/srep39732.

Abstract

Intrinsically disordered proteins (IDPs) are prevalent in eukaryotes, performing signaling and regulatory functions. Often associated with human diseases, they constitute drug-development targets. NUPR1 is a multifunctional IDP, over-expressed and involved in pancreatic ductal adenocarcinoma (PDAC) development. By screening 1120 FDA-approved compounds, fifteen candidates were selected, and their interactions with NUPR1 were characterized by experimental and simulation techniques. The protein remained disordered upon binding to all fifteen candidates. These compounds were tested in PDAC-derived cell-based assays, and all induced cell-growth arrest and senescence, reduced cell migration, and decreased chemoresistance, mimicking NUPR1-deficiency. The most effective compound completely arrested tumor development in vivo on xenografted PDAC-derived cells in mice. Besides reporting the discovery of a compound targeting an intact IDP and specifically active against PDAC, our study proves the possibility to target the 'fuzzy' interface of a protein that remains disordered upon binding to its natural biological partners or to selected drugs.

摘要

无规卷曲蛋白(IDPs)在真核生物中普遍存在,发挥着信号和调节功能。它们常与人类疾病相关,是药物开发的靶点。NUPR1 是一种多功能 IDP,在胰腺导管腺癌(PDAC)的发展中过表达并参与其中。通过筛选 1120 种 FDA 批准的化合物,选择了十五种候选化合物,并通过实验和模拟技术来研究它们与 NUPR1 的相互作用。在与所有十五种候选化合物结合后,NUPR1 仍然保持无序状态。在基于 PDAC 衍生细胞的测定中测试了这些化合物,所有化合物均诱导细胞生长停滞和衰老,减少细胞迁移,并降低化学抗性,模拟 NUPR1 缺失。最有效的化合物在体内完全阻止了异种移植的 PDAC 衍生细胞的肿瘤发展。除了报道发现一种针对完整 IDP 的化合物并特异性地针对 PDAC 之外,我们的研究还证明了针对其天然生物伴侣或选定药物结合后仍保持无序状态的蛋白质“模糊”界面的靶向的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a316/5213423/912704b98f7c/srep39732-f1.jpg

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