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脾酪氨酸激酶与两种新型 4-氨基吡啶并[4,3-d]嘧啶衍生物抑制剂复合物的晶体结构。

Crystal Structures of Spleen Tyrosine Kinase in Complex with Two Novel 4-Aminopyrido[4,3-d] Pyrimidine Derivative Inhibitors.

机构信息

Research Institute, National Cancer Center, Goyang, Gyeonggi 10408, Korea.

The Research Institute of Pharmaceutical Sciences, College of Pharmacy, Seoul National University, Seoul 08826, Korea.

出版信息

Mol Cells. 2018 Jun;41(6):545-552. doi: 10.14348/molcells.2018.2219. Epub 2018 Jun 12.

Abstract

Spleen tyrosine kinase (SYK) is a cytosolic non-receptor protein tyrosine kinase. Because SYK mediates key receptor signaling pathways involving the B cell receptor and Fc receptors, SYK is an attractive target for autoimmune disease and cancer treatments. To date, representative oral SYK inhibitors, including fostamatinib (R406 or R788), entospletinib (GS-9973), cerdulatinib (PRT062070), and TAK-659, have been assessed in clinical trials. Here, we report the crystal structures of SYK in complex with two newly developed inhibitors possessing 4-aminopyrido[4,3-D]pyrimidine moieties (SKI-G-618 and SKI-O-85). One SYK inhibitor (SKI-G-618) exhibited moderate inhibitory activity against SYK, whereas the other inhibitor (SKI-O-85) exhibited a low inhibitory profile against SYK. Binding mode analysis indicates that a highly potent SYK inhibitor might be developed by modifying and optimizing the functional groups that interact with Leu377, Gly378, and Val385 in the G-loop and the nearby region in SYK. In agreement with our structural analysis, one of our SYK inhibitor (SKI-G-618) shows strong inhibitory activities on the -hexosaminidase release and phosphorylation of SYK/Vav in RBL-2H3 cells. Taken together, our findings have important implications for the design of high affinity SYK inhibitors.

摘要

脾酪氨酸激酶(SYK)是一种胞质非受体酪氨酸激酶。由于 SYK 介导涉及 B 细胞受体和 Fc 受体的关键受体信号通路,因此 SYK 是自身免疫性疾病和癌症治疗的有吸引力的靶标。迄今为止,代表性的口服 SYK 抑制剂,包括 fostamatinib(R406 或 R788)、entospletinib(GS-9973)、cerdulatinib(PRT062070)和 TAK-659,已在临床试验中进行了评估。在这里,我们报告了 SYK 与两种新开发的具有 4-氨基吡啶并[4,3-D]嘧啶结构的抑制剂复合物的晶体结构(SKI-G-618 和 SKI-O-85)。一种 SYK 抑制剂(SKI-G-618)对 SYK 表现出中等抑制活性,而另一种抑制剂(SKI-O-85)对 SYK 表现出低抑制谱。结合模式分析表明,通过修饰和优化与 G 环中的 Leu377、Gly378 和 Val385 以及 SYK 附近区域相互作用的功能基团,可能开发出具有高活性的 SYK 抑制剂。与我们的结构分析一致,我们的一种 SYK 抑制剂(SKI-G-618)在 RBL-2H3 细胞中显示出强烈抑制β-己糖胺酶释放和 SYK/Vav 磷酸化的活性。总之,我们的研究结果对设计高亲和力 SYK 抑制剂具有重要意义。

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