Literature DB >> 31797621

Two-stage ML Classifier for Identifying Host Protein Targets of the Dengue Protease.

Jacob T Stanley1, Alison R Gilchrist, Alex C Stabell, Mary A Allen, Sara L Sawyer, Robin D Dowell.   

Abstract

Flaviviruses such as dengue encode a protease that is essential for viral replication. The protease functions by cleaving well-conserved positions in the viral polyprotein. In addition to the viral polyprotein, the dengue protease cleaves at least one host protein involved in immune response. This raises the question, what other host proteins are targeted and cleaved? Here we present a new computational method for identifying putative host protein targets of the dengue virus protease. Our method relies on biochemical and secondary structure features at the known cleavage sites in the viral polyprotein in a two-stage classification process to identify putative cleavage targets. The accuracy of our predictions scaled inversely with evolutionary distance when we applied it to the known cleavage sites of several other flaviviruses-a good indication of the validity of our predictions. Ultimately, our classifier identified 257 human protein sites possessing both a similar target motif and accessible local structure. These proteins are promising candidates for further investigation. As the number of viral sequences expands, our method could be adopted to predict host targets of other flaviviruses.

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Year:  2020        PMID: 31797621

Source DB:  PubMed          Journal:  Pac Symp Biocomput        ISSN: 2335-6928


  2 in total

Review 1.  Running With Scissors: Evolutionary Conflicts Between Viral Proteases and the Host Immune System.

Authors:  Brian V Tsu; Elizabeth J Fay; Katelyn T Nguyen; Miles R Corley; Bindhu Hosuru; Viviana A Dominguez; Matthew D Daugherty
Journal:  Front Immunol       Date:  2021-11-01       Impact factor: 7.561

2.  Prediction of coronavirus 3C-like protease cleavage sites using machine-learning algorithms.

Authors:  Huiting Chen; Zhaozhong Zhu; Ye Qiu; Xingyi Ge; Heping Zheng; Yousong Peng
Journal:  Virol Sin       Date:  2022-05-02       Impact factor: 6.947

  2 in total

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