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Interpool:解读智能池化结果。

Interpool: interpreting smart-pooling results.

作者信息

Thierry-Mieg Nicolas, Bailly Gilles

机构信息

TIMC-IMAG, CNRS UMR5525, Faculte de Medecine, 38706 La Tronche Cedex, France.

出版信息

Bioinformatics. 2008 Mar 1;24(5):696-703. doi: 10.1093/bioinformatics/btn001. Epub 2008 Jan 9.

Abstract

MOTIVATION

In high-throughput projects aiming to identify rare positives using a binary assay, smart-pooling constitutes an appealing strategy liable of significantly reducing the number of tests while correcting for experimental noise. In order to perform simulations for choosing an appropriate set of pools, and later to interpret the experimental results, the pool outcomes must be 'decoded'. The intuitive aim is clearly to identify the positives that gave rise to an observation, whether real or simulated. However, this goal is not well-formalized and has been the focus of very few studies.

RESULTS

We first provide a clear combinatorial formalization of the 'decoding problem'. We then present interpool, an exact algorithm to solve this problem. An efficient implementation is freely available. Its usefulness is illustrated in the context of yeast-two-hybrid interactome mapping with the Shifted Transversal Design.

AVAILABILITY

The implementation, licensed under the GNU GPL, can be downloaded from http://www-timc.imag.fr/Nicolas.Thierry-Mieg/.

摘要

动机

在旨在通过二元检测识别罕见阳性的高通量项目中,智能池化是一种有吸引力的策略,它能够在校正实验噪声的同时显著减少检测次数。为了进行模拟以选择合适的池集,并随后解释实验结果,必须对池结果进行“解码”。直观的目标显然是识别导致观察结果(无论是真实的还是模拟的)的阳性样本。然而,这个目标并没有得到很好的形式化,并且一直是很少研究的焦点。

结果

我们首先对“解码问题”进行了清晰的组合形式化。然后我们提出了interpool,一种解决此问题的精确算法。可以免费获得一个高效的实现。在酵母双杂交相互作用组图谱绘制的背景下,通过移位横向设计说明了它的有用性。

可用性

根据GNU GPL许可的实现可以从http://www-timc.imag.fr/Nicolas.Thierry-Mieg/下载。

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