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Toward more accurate prediction of caspase cleavage sites: a comprehensive review of current methods, tools and features

机译:朝着更准确的胱天蛋白酶切割位点预测:对当前方法,工具和特征的全面审查

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As one of the few irreversible protein posttranslationalmodifications, proteolytic cleavage is involved in nearly all aspects of cellular activities, ranging from gene regulation to cell life-cycle regulation. Among the various protease-specific types of proteolytic cleavage, cleavages by casapses/granzyme B are considered as essential in the initiation and execution of programmed cell death and inflammation processes. Although a number of substrates for both types of proteolytic cleavage have been experimentally identified, the complete repertoire of caspases and granzyme B substrates remains to be fully characterized. To tackle this issue and complement experimental efforts for substrate identification, systematic bioinformatics studies of known cleavage sites provide important insights into caspase/granzyme B substrate specificity, and facilitate the discovery of novel substrates. In this article, we review and benchmark 12 state-of-the-art sequence-based bioinformatics approaches and tools for caspases/granzyme B cleavage prediction.We evaluate and compare thesemethods in terms of their input/output, algorithms used, prediction performance, validationmethods and software availability and utility. In addition, we construct independent data sets consisting of caspases/granzyme B substrates fromdifferent species and accordingly assess the predictive power of these different predictors for the identification of cleavage sites.We find that the prediction results are highly variable among different predictors. Furthermore, we experimentally validate the predictions of a case study by performing caspase cleavage assay.We anticipate that this comprehensive review and survey analysis will provide an insightful resource for biologists and bioinformaticians who are interested in using and/or developing tools for caspase/granzyme B cleavage prediction.
机译:作为少数不可逆蛋白质的后期性修改之一,蛋白水解裂解涉及细胞活性的几乎所有方面,从基因调节到细胞生命周期调节。在各种蛋白酶特异性类型的蛋白水解裂解中,通过包血症/颗粒酶B的裂解被认为是编程细胞死亡和炎症过程的起始和执行中的必要性。尽管已经通过实验鉴定了两种类型的蛋白水解裂解的许多底物,但是胱天蛋白酶的完全曲目和颗粒酶B基质仍然是完全表征的。为了解决这一问题和补充基板鉴定的实验努力,已知的裂解位点的系统生物信息学研究为Caspase / Granzyme B底座特异性提供了重要的见解,并促进了新型基材的发现。在本文中,我们审查和基于第12项基于最先进的序列的生物信息学方法和用于木质酶的生物信息和工具,用于Caspases / Granzyme B切割预测。在其输入/输出,使用的算法,预测性能方面,评估和比较其比较的算法,预测性能,验证方法和软件可用性和实用程序。此外,我们构建由血糖/颗粒酶B基质组成的独立数据集,并因此评估这些不同预测器的预测力,以便鉴定裂解位点。我们发现预测结果在不同预测因子之间具有高度变化。此外,我们通过进行Caspase裂解测定进行实验验证案例研究的预测。我们预计这一综合审查和调查分析将为有兴趣使用和/或开发Caspase / Granzyme的工具的生物学家和生物信息管理员提供富有洞察力的资源。切割预测。

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