A Review of Fifteen Years Developing Computational Tools to Study Protein Aggregation

Carlos Pintado-Grima, O. Bárcenas, Andrea Bartolomé-Nafría, Marc Fornt-Suñé, Valentín Iglesias, J. García-Pardo, S. Ventura
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引用次数: 3

Abstract

The presence of insoluble protein deposits in tissues and organs is a hallmark of many human pathologies. In addition, the formation of protein aggregates is considered one of the main bottlenecks to producing protein-based therapeutics. Thus, there is a high interest in rationalizing and predicting protein aggregation. For almost two decades, our laboratory has been working to provide solutions for these needs. We have traditionally combined the core tenets of both bioinformatics and wet lab biophysics to develop algorithms and databases to study protein aggregation and its functional implications. Here, we review the computational toolbox developed by our lab, including programs for identifying sequential or structural aggregation-prone regions at the individual protein and proteome levels, engineering protein solubility, finding and evaluating prion-like domains, studying disorder-to-order protein transitions, or categorizing non-conventional amyloid regions of polar nature, among others. In perspective, the succession of the tools we describe illustrates how our understanding of the protein aggregation phenomenon has evolved over the last fifteen years.
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蛋白质聚集研究计算工具开发15年回顾
组织和器官中不溶性蛋白质沉积物的存在是许多人类疾病的标志。此外,蛋白质聚集体的形成被认为是生产基于蛋白质的治疗方法的主要瓶颈之一。因此,人们对合理化和预测蛋白质聚集非常感兴趣。近二十年来,我们的实验室一直致力于为这些需求提供解决方案。传统上,我们将生物信息学和湿实验室生物物理的核心原理相结合,开发算法和数据库来研究蛋白质聚集及其功能含义。在这里,我们回顾了我们实验室开发的计算工具箱,包括在单个蛋白质和蛋白质组水平上识别序列或结构易聚集区域的程序,工程蛋白质溶解度,发现和评估朊病毒样结构域,研究无序到有序的蛋白质转变,或对极性的非传统淀粉样蛋白区域进行分类,等等。从长远来看,我们描述的一系列工具说明了我们对蛋白质聚集现象的理解在过去十五年中是如何演变的。
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