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Predictive Bcl-2 Family Binding Models Rooted in Experiment or Structure

机译:预测性BCL-2系列含有实验或结构的系列型号

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摘要

Proteins of the Bcl-2 family either enhance or suppress programmed cell death and are centrally involved in cancer development and resistance to chemotherapy. BH3 (Bcl-2 homology 3)-only Bcl-2 proteins promote cell death by docking an α-helix into a hydrophobic groove on the surface of one or more of five pro-survival Bcl-2 receptor proteins. There is high structural homology within the pro-death and pro-survival families, yet a high degree of interaction specificity is nevertheless encoded, posing an interesting and important molecular recognition problem. Understanding protein features that dictate Bcl-2 interaction specificity is critical for designing peptide-based cancer therapeutics and diagnostics. In this study, we present peptide SPOT arrays and deep sequencing data from yeast display screening experiments that significantly expand the BH3 sequence space that has been experimentally tested for interaction with five human anti-apoptotic receptors. These data provide rich information about the determinants of Bcl-2 family specificity. To interpret and use the information, we constructed two simple data-based models that can predict affinity and specificity when evaluated on independent data sets within a limited sequence space. We also constructed a novel structure-based statistical potential, called STATIUM, which is remarkably good at predicting Bcl-2 affinity and specificity, especially considering it is not trained on experimental data. We compare the performance of our three models to each other and to alternative structure-based methods and discuss how such tools can guide prediction and design of new Bcl-2 family complexes.
机译:BCL-2家族的蛋白质要么增强或抑制编程的细胞死亡,属于癌症发育和抗化疗的集中。 BH3(BCL-2同源性3) - 通过将α-螺旋对接到五个促生物质BCL-2受体蛋白中的一种或多种的表面上的疏水槽中,促进细胞死亡。在主死亡和亲自生存家庭中有很高的结构性同源性,但仍然是一种高度的相互作用特异性,占据了一个有趣和重要的分子识别问题。了解蛋白质特征,指示Bcl-2相互作用特异性对于设计基于肽的癌症治疗和诊断至关重要。在该研究中,我们呈现肽点阵列和来自酵母显示屏筛选实验的深度测序数据,从而显着地扩展了已经通过试验测试的BH3序列空间与五种人抗凋亡受体相互作用。这些数据提供了有关BCL-2家庭特异性的决定因素的丰富信息。要解释和使用信息,我们构建了两个简单的基于数据的模型,可以在有限序列空间内的独立数据集上评估时预测亲和力和特异性。我们还构建了一种新的基于结构的统计潜力,称为统计学潜力,这在预测BCL-2亲和力和特异性方面非常擅长,特别是考虑到实验数据训练。我们比较我们三种模型的性能彼此以及基于替代的结构的方法,并讨论这些工具如何指导新的BCL-2家族复合物的预测和设计。

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