JAK3抑制剂VI是表皮生长因子受体的突变特异性抑制剂,其gatekeeper突变为T790M。

N. Nishiya, Y. Sakamoto, Yusuke Oku, T. Nonaka, Y. Uehara
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引用次数: 9

摘要

目的鉴定对表皮生长因子受体(EGFR)耐药突变体有效的非喹唑啉激酶抑制剂。方法筛选sa激酶抑制剂库,以确定其对非小细胞肺癌(nsclc) EGFR小分子酪氨酸激酶抑制剂(TKIs)耐药的gatekeeper突变T790M的EGFR体外激酶激活的特异性抑制作用。通过检测NCI-H1975细胞中EGFR T790M/L858R的自磷酸化水平证实了这种抑制作用,NCI-H1975细胞是一种携带gatekeeper突变的非小细胞肺癌细胞系。使用MTT法评估候选化合物Janus激酶3 (JAK3)抑制剂VI对细胞增殖的影响,并比较t790m阳性和阴性肺癌细胞系。将JAK3抑制剂VI建模为EGFR T790M/L858R的atp结合口袋。通过计算结合能估计化合物与野生型(WT)或突变型egfr或JAK3的激酶结构域之间的潜在物理相互作用。将EGFR和jak的守门人残基进行比对,讨论EGFR T790M和jak之间的相似性。结果JAK3抑制剂VI是已知的JAK3酪氨酸激酶抑制剂,可选择性抑制EGFR T790M/L858R,但对WT型EGFR的体外抑制作用较弱。JAK3抑制剂VI在EGF刺激下也能特异性降低NCI-H1975细胞中EGFR T790M/L858R的自磷酸化,但对A431细胞中WT型EGFR没有抑制作用。此外,JAK3抑制剂VI抑制NCI-H1975细胞的增殖,但对表达WT egfr的细胞系A431和A549的抑制作用有限。JAK3抑制剂VI与EGFR T790M/L858R的atp结合口袋之间的对接模拟预测了与氢键的潜在结合状态。估计JAK3抑制剂VI与EGFR T790M/L858R的结合能比其与WT EGFR的结合能更稳定。氨基酸序列比对显示,在WT中,JAK家族激酶的守门人残基是蛋氨酸,与EGFR T790M相似,这表明JAK的TKIs可能对EGFR T790M也有效。结论JAK3抑制剂VI是一种gatekeeper突变体选择性TKI,为寻找新的EGFR T790M抑制剂提供了一种策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
JAK3 inhibitor VI is a mutant specific inhibitor for epidermal growth factor receptor with the gatekeeper mutation T790M.
AIM To identify non-quinazoline kinase inhibitors effective against drug resistant mutants of epidermal growth factor receptor (EGFR). METHODS A kinase inhibitor library was subjected to screening for specific inhibition pertaining to the in vitro kinase activation of EGFR with the gatekeeper mutation T790M, which is resistant to small molecular weight tyrosine kinase inhibitors (TKIs) for EGFR in non-small cell lung cancers (NSCLCs). This inhibitory effect was confirmed by measuring autophosphorylation of EGFR T790M/L858R in NCI-H1975 cells, an NSCLC cell line harboring the gatekeeper mutation. The effects of a candidate compound, Janus kinase 3 (JAK3) inhibitor VI, on cell proliferation were evaluated using the MTT assay and were compared between T790M-positive and -negative lung cancer cell lines. JAK3 inhibitor VI was modeled into the ATP-binding pocket of EGFR T790M/L858R. Potential physical interactions between the compound and kinase domains of wild-type (WT) or mutant EGFRs or JAK3 were estimated by calculating binding energy. The gatekeeper residues of EGFRs and JAKs were aligned to discuss the similarities among EGFR T790M and JAKs. RESULTS We found that JAK3 inhibitor VI, a known inhibitor for JAK3 tyrosine kinase, selectively inhibits EGFR T790M/L858R, but has weaker inhibitory effects on the WT EGFR in vitro. JAK3 inhibitor VI also specifically reduced autophosphorylation of EGFR T790M/L858R in NCI-H1975 cells upon EGF stimulation, but did not show the inhibitory effect on WT EGFR in A431 cells. Furthermore, JAK3 inhibitor VI suppressed the proliferation of NCI-H1975 cells, but showed limited inhibitory effects on the WT EGFR-expressing cell lines A431 and A549. A docking simulation between JAK3 inhibitor VI and the ATP-binding pocket of EGFR T790M/L858R predicted a potential binding status with hydrogen bonds. Estimated binding energy of JAK3 inhibitor VI to EGFR T790M/L858R was more stable than its binding energy to the WT EGFR. Amino acid sequence alignments revealed that the gatekeeper residues of JAK family kinases are methionine in WT, similar to EGFR T790M, suggesting that TKIs for JAKs may also be effective for EGFR T790M. CONCLUSION Our findings demonstrate that JAK3 inhibitor VI is a gatekeeper mutant selective TKI and offer a strategy to search for new EGFR T790M inhibitors.
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