Liu Hongfang, Zeeberg Barry R, Qu Gang, Koru A Gunes, Ferrucci Alessandro, Kahn Ari, Ryan Michael C, Nuhanovic Antej, Munson Peter J, Reinhold William C, Kane David W, Weinstein John N
Genomics and Bioinformatics Group, Laboratory of Molecular Pharmacology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Bioinformatics. 2007 Sep 15;23(18):2385-90. doi: 10.1093/bioinformatics/btm360. Epub 2007 Jul 27.
Affymetrix microarrays are widely used to measure global expression of mRNA transcripts. That technology is based on the concept of a probe set. Individual probes within a probe set were originally designated by Affymetrix to hybridize with the same unique mRNA transcript. Because of increasing accuracy in knowledge of genomic sequences, however, a substantial number of the manufacturer's original probe groupings and mappings are now known to be inaccurate and must be corrected. Otherwise, analysis and interpretation of an Affymetrix microarray experiment will be in error.
AffyProbeMiner is a computationally efficient platform-independent tool that uses all RefSeq mature RNA protein coding transcripts and validated complete coding sequences in GenBank to (1) regroup the individual probes into consistent probe sets and (2) remap the probe sets to the correct sets of mRNA transcripts. The individual probes are grouped into probe sets that are 'transcript-consistent' in that they hybridize to the same mRNA transcript (or transcripts) and, therefore, measure the same entity (or entities). About 65.6% of the probe sets on the HG-U133A chip were affected by the remapping. Pre-computed regrouped and remapped probe sets for many Affymetrix microarrays are made freely available at the AffyProbeMiner web site. Alternatively, we provide a web service that enables the user to perform the remapping for any type of short-oligo commercial or custom array that has an Affymetrix-format Chip Definition File (CDF). Important features that differentiate AffyProbeMiner from other approaches are flexibility in the handling of splice variants, computational efficiency, extensibility, customizability and user-friendliness of the interface.
The web interface and software (GPL open source license), are publicly-accessible at http://discover.nci.nih.gov/affyprobeminer.
Affymetrix微阵列被广泛用于测量mRNA转录本的整体表达。该技术基于探针集的概念。探针集内的各个探针最初由Affymetrix指定与相同的独特mRNA转录本杂交。然而,由于基因组序列知识的准确性不断提高,现在已知制造商的大量原始探针分组和映射是不准确的,必须加以纠正。否则,Affymetrix微阵列实验的分析和解释将出现错误。
AffyProbeMiner是一个计算效率高且与平台无关的工具,它使用所有RefSeq成熟RNA蛋白质编码转录本和GenBank中经过验证的完整编码序列来:(1)将各个探针重新分组为一致的探针集;(2)将探针集重新映射到正确的mRNA转录本集合。各个探针被分组为“转录本一致”的探针集,因为它们与相同的mRNA转录本(或转录本)杂交,因此测量相同的实体(或实体)。HG-U133A芯片上约65.6%的探针集受到重新映射的影响。许多Affymetrix微阵列的预计算重新分组和重新映射的探针集可在AffyProbeMiner网站上免费获取。或者,我们提供一项网络服务,使用户能够对任何具有Affymetrix格式芯片定义文件(CDF)的短寡核苷酸商业或定制阵列进行重新映射。AffyProbeMiner与其他方法不同的重要特征包括在处理剪接变体方面的灵活性、计算效率、可扩展性、可定制性以及界面的用户友好性。
网络界面和软件(GPL开源许可证)可在http://discover.nci.nih.gov/affyprobeminer上公开访问。