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Extremely Randomized Machine Learning Methods for Compound Activity Prediction
DOI:10.3390/molecules201119679.png)
摘要
En 中文
Speed, a relatively low requirement for computational resources and high effectiveness of the evaluation of the bioactivity of compounds have caused a rapid growth of interest in the application of machine learning methods to virtual screening tasks. However, due to the growth of the amount of data also in cheminformatics and related fields, the aim of research has shifted not only towards the development of algorithms of high predictive power but also towards the simplification of previously existing methods to obtain results more quickly. In the study, we tested two approaches belonging to the group of so-called extremely randomized methods'Extreme Entropy Machine and Extremely Randomized Treesfor their ability to properly identify compounds that have activity towards particular protein targets. These methods were compared with their non-extreme' competitors, i.e., Support Vector Machine and Random Forest. The extreme approaches were not only found out to improve the efficiency of the classification of bioactive compounds, but they were also proved to be less computationally complex, requiring fewer steps to perform an optimization procedure.
Keyword:
virtual screening
compounds classification
extreme entropy machine
extremely randomized trees
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期刊
IF:
4.6
论文数:
6.5W
被引数:
23.7W
机构
引用论文
5-HT6 receptor antagonists as novel cognitive enhancing agents for Alzheimer's disease
NEUROTHERAPEUTICS
IF6.9
ZINC - A free database of commercially available compounds for virtual screening锌-用于虚拟筛选的市售化合物的免费数据库
PaDEL-Descriptor: An Open Source Software to Calculate Molecular Descriptors and FingerprintsPadel-descriptor: 计算分子描述符和指纹的开源软件
ChEMBL: a large-scale bioactivity database for drug discoveryChEMBL: 用于药物发现的大规模生物活性数据库
NUCLEIC ACIDS RESEARCH
IF13.1

