Todorova R
Bioorg Khim. 2014 Jan-Feb;40(1):20-30.
A relationship was found between the Amino acid (AA) composition, Intrinsic Protein Disorder (IPD) and Protein Binding Regions (PBRs) of the functional regions of Ewing's sarcoma protein (EWS) and oncogenic EWS fusion proteins (EFPs). EWS has high IPD and 64% predicted Disordered Binding Regions (DBRs) by ANCHOR. The native Transcription Factors, fused to EWS Activation Domain (EAD) in EFPs, show high DBRs in N-terminal domain and relatively low in C-terminal domain. EFPs oncogenic function is related to IPD and PBRs probabilities, high around breakpoint and decreased in the fused Transcription Factor. The increased IPD in EAD around (AA 82), and the small RBRs around (AAs (50-60) and 100) are consistent with the reported physical interactions with RNA Polymerase II subunits. The AAs (228-264) of EWS, interacting with ZFM1 (SF1), correspond to two peaks of DBRs by Anchor and high IPD by IUPred. The IQ domain of EAD (AAs 258-280) that is phosphorylated by PKC and interacts with calmodulin, has high IPD and DBRs probability. The Ser266, conserved site of PKC phosphorylation, is situated in DBR and IPD region with about 100% probability. The small PBRs found in the EAD correspond to important physical protein-protein interactions, confirmed by experimental data. Thus regions of EWS and EFPs, included in functional interactions with other partners, are enriched of Protein Binding Regions by ANCHOR. The development of IPD- and PBRs-related, EWS-FLI1-directed specific therapies will help the design of antitumor agents against ESFT because of high patient mortality in cases of meta- static disease.
在尤因肉瘤蛋白(EWS)和致癌性EWS融合蛋白(EFPs)的功能区域的氨基酸(AA)组成、内在蛋白质无序(IPD)和蛋白质结合区域(PBRs)之间发现了一种关系。EWS具有较高的IPD,通过ANCHOR预测有64%的无序结合区域(DBRs)。在EFPs中与EWS激活域(EAD)融合的天然转录因子,在N端结构域显示出较高的DBRs,而在C端结构域相对较低。EFPs的致癌功能与IPD和PBRs概率相关,在断点附近较高,而在融合的转录因子中降低。EAD中(约82位氨基酸)周围IPD的增加,以及(50 - 60位氨基酸和100位氨基酸)周围较小的RBRs与报道的与RNA聚合酶II亚基的物理相互作用一致。EWS的(228 - 264位氨基酸)与ZFM1(SF1)相互作用,通过Anchor对应于两个DBRs峰,通过IUPred具有较高的IPD。EAD的IQ结构域(258 - 280位氨基酸)被PKC磷酸化并与钙调蛋白相互作用,具有较高的IPD和DBRs概率。PKC磷酸化的保守位点Ser266位于DBR和IPD区域,概率约为100%。在EAD中发现的小PBRs对应于重要的蛋白质 - 蛋白质物理相互作用,实验数据证实了这一点。因此,EWS和EFPs中与其他伙伴发生功能相互作用的区域通过ANCHOR富含蛋白质结合区域。由于转移性疾病患者死亡率高,开发与IPD和PBRs相关的、EWS - FLI1导向的特异性疗法将有助于设计针对ESFT的抗肿瘤药物。