首页> 外文期刊>International Journal of Molecular Sciences >iHyd-PseAAC: Predicting Hydroxyproline and Hydroxylysine in Proteins by Incorporating Dipeptide Position-Specific Propensity into Pseudo Amino Acid Composition
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iHyd-PseAAC: Predicting Hydroxyproline and Hydroxylysine in Proteins by Incorporating Dipeptide Position-Specific Propensity into Pseudo Amino Acid Composition

机译:iHyd-PseAAC:通过将二肽位置特异性倾向纳入伪氨基酸组成来预测蛋白质中的羟脯氨酸和羟赖氨酸

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Post-translational modifications (PTMs) play crucial roles in various cell functions and biological processes. Protein hydroxylation is one type of PTM that usually occurs at the sites of proline and lysine. Given an uncharacterized protein sequence, which site of its Pro (or Lys) can be hydroxylated and which site cannot? This is a challenging problem, not only for in-depth understanding of the hydroxylation mechanism, but also for drug development, because protein hydroxylation is closely relevant to major diseases, such as stomach and lung cancers. With the avalanche of protein sequences generated in the post-genomic age, it is highly desired to develop computational methods to address this problem. In view of this, a new predictor called “iHyd-PseAAC” (identify hydroxylation by pseudo amino acid composition) was proposed by incorporating the dipeptide position-specific propensity into the general form of pseudo amino acid composition. It was demonstrated by rigorous cross-validation tests on stringent benchmark datasets that the new predictor is quite promising and may become a useful high throughput tool in this area. A user-friendly web-server for iHyd-PseAAC is accessible at http://app.aporc.org/iHyd-PseAAC/. Furthermore, for the convenience of the majority of experimental scientists, a step-by-step guide on how to use the web-server is given. Users can easily obtain their desired results by following these steps without the need of understanding the complicated mathematical equations presented in this paper just for its integrity.
机译:翻译后修饰(PTM)在各种细胞功能和生物学过程中起着至关重要的作用。蛋白质羟基化是PTM的一种类型,通常发生在脯氨酸和赖氨酸的位置。给定一个未表征的蛋白质序列,其Pro(或Lys)的哪个位点可以被羟基化,而哪个位点不能?这是一个具有挑战性的问题,不仅对于深入了解羟化机理,而且对于药物开发,因为蛋白质羟化与主要疾病(例如胃癌和肺癌)密切相关。随着在后基因组时代产生的大量蛋白质序列,迫切需要开发计算方法来解决该问题。有鉴于此,通过将二肽位置特异性倾向纳入假氨基酸组成的一般形式,提出了一种新的预测因子“ iHyd-PseAAC”(通过假氨基酸组成识别羟基化)。通过在严格的基准数据集上进行严格的交叉验证测试证明,新的预测变量非常有前途,并且可能成为该领域有用的高吞吐量工具。可在http://app.aporc.org/iHyd-PseAAC/上访问iHyd-PseAAC的用户友好型Web服务器。此外,为了方便大多数实验科学家,还提供了有关如何使用Web服务器的分步指南。通过遵循以下步骤,用户可以轻松地获得所需的结果,而无需仅为了完整性而理解本文介绍的复杂数学方程式。

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