拉帕蒂尼
化学
表皮生长因子受体抑制剂
生物信息学
磷酸化
下调和上调
计算生物学
表皮生长因子受体
癌症研究
生物化学
生物
癌症
受体
基因
曲妥珠单抗
遗传学
乳腺癌
作者
Martiniano Bello,Lucia Saldaña-Rivero,José Correa‐Basurto,Benjamin A. Garcia,Víctor Armando Sánchez-Espinosa
标识
DOI:10.1016/j.ijbiomac.2017.12.162
摘要
Activation of EGFR starts by ligand binding at the extracellular domain which results in homo and heterodimerization, leading to phosphorylation, activation of downstream signaling pathways which upregulate expression of genes, proliferation and angiogenesis. Abnormalities in the expression of EGFR play a critical role in the development of different types of cancer. HER2 is the preferred heterodimerization partner for EGFR; this biological characteristic together with the high percentage of structural homology has been exploited in the design of dual synthetic inhibitors against EGFR/HER2. Herein we combined structural data and molecular dynamics (MD) simulations coupled to an MMGBSA approach to provide insight into the binding mechanism between two dual synthetics (lapatinib and TAK-285) and one dual natural inhibitor (EGCG) which target EGFR/HER2. In addition, we proposed some EGCG derivatives which were filtered through in silico screening. Structural analysis demonstrated that the coupling of synthetic, natural or newly designed compounds impacts the conformational space of EGFR and HER2 differently. Energetic analysis points out that lapatinib and TAK-285 have better affinity for inactive EGFR than the active EGFR state or HER2, whereas some EGCG derivatives seem to form binding affinities similar to those observed for lapatinib or TAK-285.
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