Ali Hamed Ismail, Nagamatsu Tomofumi, Akaho Eiichi
Bioinformation. 2011 Feb 7;5(9):368-74. doi: 10.6026/97320630005368.
Different classes of compounds were investigated for their binding affinities into different protein tyrosine kinases (PTKs) employing a novel flexible ligand docking approach by using AutoDock 3.05 and 4. These compounds include many flavin analogs, which were developed in our group with varying degrees of cytotoxic activity (comparable or moderately superior to cisplatin and ara-c), and database selected analogs. They were docked onto twelve different families of PTKs retrieved from the Protein Data Bank. These proteins are representatives of plausible models of interactions with chemotherapeutic agents. A comparative study of the intact co-crystallized ligands of various types of PTKs was carried out. Results revealed that the new class of 5-deazapteridine and steroid hybrid compounds VIa,b, and d, and the vertical-type bispyridodipyrimidine with n-hexyl chain junction between its N-10 and N-10 atoms Xa, exhibited non-selective PTK binding capacities, with the lowest (Gb). On the other hand, 2-amino benzoic acid analog IIa, phenoxypyrido [3, 4-d]pyrimidine derivative IVc, tyrosine containing tripeptide Vd, and the one from Sumisho data base 831 are proposed to have selective PTK binding affinities to certain classes of tyrosine kinases, namely, HGFR (c-met), ZAP-70, insulin receptor kinase, EGFR, respectively. All These compounds of highest affinities were docked within the binding sites of PTKs with reasonable RMSD and 1-5 hydrogen bonds.
采用新型灵活配体对接方法,利用AutoDock 3.05和4,研究了不同类别的化合物与不同蛋白酪氨酸激酶(PTK)的结合亲和力。这些化合物包括许多黄素类似物,它们是我们小组开发的,具有不同程度的细胞毒性活性(与顺铂和阿糖胞苷相当或略优于它们),以及从数据库中选择的类似物。它们被对接至从蛋白质数据库检索出的12个不同的PTK家族。这些蛋白质是与化疗药物相互作用的合理模型的代表。对各种类型PTK完整的共结晶配体进行了比较研究。结果表明,新型的5-脱氮杂蝶呤和类固醇杂化化合物VIa、b和d,以及在其N-10和N-10原子之间带有正己基链连接的垂直型双吡啶并二嘧啶Xa,表现出非选择性的PTK结合能力,具有最低的(结合自由能)。另一方面,2-氨基苯甲酸类似物IIa、苯氧基吡啶并[3,4-d]嘧啶衍生物IVc、含酪氨酸的三肽Vd以及来自住友数据库的831,被认为分别对某些类别的酪氨酸激酶具有选择性PTK结合亲和力,即HGFR(c-met)、ZAP-70、胰岛素受体激酶、EGFR。所有这些具有最高亲和力的化合物都以合理的均方根偏差和1至5个氢键对接在PTK的结合位点内。