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首页> 外文期刊>Journal of Bioinformatics and Computational Biology >Optimization of therapeutic proteins to delete T-cell epitopes while maintaining beneficial residue interactions.
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Optimization of therapeutic proteins to delete T-cell epitopes while maintaining beneficial residue interactions.

机译:优化治疗性蛋白质以删除T细胞表位,同时保持有益的残基相互作用。

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Exogenous enzymes, signaling peptides, and other classes of nonhuman proteins represent a potentially massive but largely untapped pool of biotherapeutic agents. Adapting a foreign protein for therapeutic use poses numerous design challenges. We focus here on one significant problem: modifying the protein to mitigate the immune response mounted against "non-self" proteins, while not adversely affecting the protein's stability or therapeutic activity. In order to propose such variants suitable for experimental evaluation, this paper develops a computational method to select sets of mutations predicted to delete immunogenic T-cell epitopes, as evaluated by a 9-mer potential, while simultaneously maintaining important residues and residue interactions, as evaluated by one- and two-body potentials. While this design problem is NP-hard, we develop an integer programming approach that works very well in practice. We demonstrate the effectiveness of our approach by developing plans for biotherapeutic proteins that, in previous studies, have been partially deimmunized via extensive experimental characterization and modification of limited segments. In contrast, our global optimization technique considers an entire protein and accounts for all residues, residue interactions, and epitopes in proposing candidates worth subjecting to experimental evaluation.
机译:外源酶,信号肽和其他类别的非人类蛋白质代表了潜在的大量但尚未开发的生物治疗剂库。使外来蛋白质适应治疗用途提出了许多设计挑战。在这里,我们集中于一个重要的问题:修饰蛋白质以减轻针对“非自身”蛋白质的免疫反应,同时不会对蛋白质的稳定性或治疗活性产生不利影响。为了提出适合实验评估的此类变体,本文开发了一种计算方法,以选择预测可删除免疫原性T细胞表位的突变集(如通过9-mer电位评估),同时保持重要的残基和残基相互作用,如由一体和二体电位评估。尽管此设计问题是NP难题,但我们开发了一种在实践中效果很好的整数编程方法。我们通过制定生物治疗性蛋白质计划来证明我们方法的有效性,该计划在先前的研究中已通过广泛的实验表征和有限区段的修饰而部分解除了免疫。相反,我们的全局优化技术会考虑整个蛋白质,并考虑所有残基,残基相互作用和表位,从而提出值得进行实验评估的候选对象。

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