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Graph Mining for SAR Transfer Series

delete2012-04-03
delete12
PRE
AI
D
Disha Gupta‐Ostermann
M
Mathias J. Wawer
A
Anne Mai Wassermann
J
Jürgen Bajorath *
DOI:10.1021/ci300071ydelete
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摘要

摘要

En 中文
The transfer of SAR information from one analog series to another is a difficult, yet highly attractive task in medicinal chemistry. At present, the evaluation of SAR transfer potential from a data mining perspective is still in its infancy. Only recently, a first computational approach has been introduced to evaluate SAR transfer events. Here, a substructure relationship-based molecular network representation has been used as a starting point to systematically identify SAR transfer series in large compound data sets. For this purpose, a methodology is introduced that consists of two stages. For graph mining, an algorithm has been designed that extracts all parallel series from compound data sets. A parallel series is formed by two series of analogs with different core structures but pairwise corresponding substitution patterns. The SAR transfer potential of identified parallel series is then evaluated using a scoring function that emphasizes corresponding potency progression over many analog pairs and large potency ranges. The substructure relationship-based molecular network in combination with the graph mining algorithm currently represents the only generally applicable approach to systematically detect SAR transfer events in large compound data sets. The combined approach has been evaluated on a large number of compound data sets and shown to systematically identify SAR transfer series.
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对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。

期刊

Journal of Chemical Information and Modeling 封面图
Journal of Chemical Information and Modeling
IF:
5.3
论文数:
9.1K
被引数:
4.0W

机构

U
university of bonn
学者数:
3.3W
论文数: 2.6W
被引数: 29
引用论文

引用论文

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A Data Mining Method To Facilitate SAR Transfer
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errWassermann, Anne Mai; Bajorath, Juergen
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Data structures and computational tools for the extraction of SAR information from large compound sets
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errWawer, Mathias; Lounkine, Eugen; Wassermann, Anne M.; Bajorath, Juergen
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Medicinal chemistry: Challenges and opportunities
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