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首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >A unique and rapid approach toward the efficient development of novel protein tyrosine phosphatase (PTP) inhibitors based on 'clicked' pseudo-glycopeptides.
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A unique and rapid approach toward the efficient development of novel protein tyrosine phosphatase (PTP) inhibitors based on 'clicked' pseudo-glycopeptides.

机译:一种独特且快速的方法,可以有效地开发基于“点击”伪糖肽的新型蛋白质酪氨酸磷酸酶(PTP)抑制剂。

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There has been considerable interest in the development of protein tyrosine phosphatase (PTP) inhibitors since many of the PTP members are tightly associated with major human diseases including autoimmune disorders, diabetes and cancer. We report here a unique and rapid approach toward the development of novel PTP inhibitor entities based on triazolyl pseudo-glycopeptides. By employing microwave-accelerated Cu(I)-catalyzed azide-alkyne 1,3-dipolar cycloaddition (CuAAC or 'click reaction'), a series of triazole-linked serinyl, threoninyl, phenylalaninyl and tyrosinyl 1-O-gluco- or galactosides have been efficiently synthesized in high yields within only ~30 min. Successive biological assay identified these glycopeptidotriazoles as favorable PTP1B and CDC25B inhibitors with selectivity over TCPTP, LAR, SHP-1 and SHP-2. Both the structural diversity of the amino acid (Ser, Thr, Phe and Tyr) introduced and the epimeric identity (Glc or Gal) on monosaccharide scaffold were determined to impact the corresponding inhibitory activity and selectivity. In addition, the benzylated sugar scaffold was demonstrated to act as a crucial role for enhancing the binding affinity of the inhibitors with the targeted PTP. Docking simulation was eventually conducted to propose plausible binding modes of this compound series with PTP1B and CDC25B. Our approach readily realized from naturally abundant raw materials (sugar and amino acid) and via facile, regioselective and expeditious synthetic method (microwave-assisted click reaction) might provide new insights toward the 'click' fabrication of structurally diverse PTP inhibitors.
机译:蛋白质酪氨酸磷酸酶(PTP)抑制剂的开发引起了人们极大的兴趣,因为许多PTP成员与主要的人类疾病(包括自身免疫性疾病,糖尿病和癌症)紧密相关。我们在此报告了一种基于三唑基假糖肽的新型PTP抑制剂实体开发的独特而快速的方法。通过使用微波加速的Cu(I)催化的叠氮化物-炔烃1,3-偶极环加成反应(CuAAC或'点击反应'),一系列三唑连接的丝氨酰基,苏氨酸,苯丙氨酰基和酪氨酰基1-O-葡萄糖或半乳糖苷仅在约30分钟内即可高效合成高产量。连续生物学分析鉴定了这些糖肽三唑是有利的PTP1B和CDC25B抑制剂,对TCPTP,LAR,SHP-1和SHP-2具有选择性。确定引入的氨基酸(Ser,Thr,Phe和Tyr)的结构多样性和单糖支架上的差向异构体(Glc或Gal)均会影响相应的抑制活性和选择性。此外,已证明苄基糖支架在增强抑制剂与靶向PTP的结合亲和力中起关键作用。最终进行了对接模拟,以提出该化合物系列与PTP1B和CDC25B的合理结合方式。我们的方法很容易从天然丰富的原料(糖和氨基酸)中以及通过简便,区域选择性和快速的合成方法(微波辅助点击反应)实现,可能为结构多样的PTP抑制剂“点击”制备提供新的见解。

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