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Virtual screening by a new Clustering-based Weighted Similarity Extreme Learning Machine approach

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  • Kitsuchart Pasupa
  • Wasu Kudisthalert

Abstract

Machine learning techniques are becoming popular in virtual screening tasks. One of the powerful machine learning algorithms is Extreme Learning Machine (ELM) which has been applied to many applications and has recently been applied to virtual screening. We propose the Weighted Similarity ELM (WS-ELM) which is based on a single layer feed-forward neural network in a conjunction of 16 different similarity coefficients as activation function in the hidden layer. It is known that the performance of conventional ELM is not robust due to random weight selection in the hidden layer. Thus, we propose a Clustering-based WS-ELM (CWS-ELM) that deterministically assigns weights by utilising clustering algorithms i.e. k-means clustering and support vector clustering. The experiments were conducted on one of the most challenging datasets–Maximum Unbiased Validation Dataset–which contains 17 activity classes carefully selected from PubChem. The proposed algorithms were then compared with other machine learning techniques such as support vector machine, random forest, and similarity searching. The results show that CWS-ELM in conjunction with support vector clustering yields the best performance when utilised together with Sokal/Sneath(1) coefficient. Furthermore, ECFP_6 fingerprint presents the best results in our framework compared to the other types of fingerprints, namely ECFP_4, FCFP_4, and FCFP_6.

Suggested Citation

  • Kitsuchart Pasupa & Wasu Kudisthalert, 2018. "Virtual screening by a new Clustering-based Weighted Similarity Extreme Learning Machine approach," PLOS ONE, Public Library of Science, vol. 13(4), pages 1-25, April.
  • Handle: RePEc:plo:pone00:0195478
    DOI: 10.1371/journal.pone.0195478
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    References listed on IDEAS

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    1. Rafał Kurczab & Andrzej J Bojarski, 2017. "The influence of the negative-positive ratio and screening database size on the performance of machine learning-based virtual screening," PLOS ONE, Public Library of Science, vol. 12(4), pages 1-12, April.
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