首页> 外文期刊>BMC Bioinformatics >Identification and utilization of inter-species conserved (ISC) probesets on Affymetrix human GeneChip ? platforms for the optimization of the assessment of expression patterns in non human primate (NHP) samples
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Identification and utilization of inter-species conserved (ISC) probesets on Affymetrix human GeneChip ? platforms for the optimization of the assessment of expression patterns in non human primate (NHP) samples

机译:在Affymetrix人类GeneChip上鉴定和利用种间保守(ISC)探针集评估非人类灵长类动物(NHP)样品中表达模式的平台

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Background While researchers have utilized versions of the Affymetrix human GeneChip? for the assessment of expression patterns in non human primate (NHP) samples, there has been no comprehensive sequence analysis study undertaken to demonstrate that the probe sequences designed to detect human transcripts are reliably hybridizing with their orthologs in NHP. By aligning probe sequences with expressed sequence tags (ESTs) in NHP, inter-species conserved (ISC) probesets, which have two or more probes complementary to ESTs in NHP, were identified on human GeneChip? platforms. The utility of human GeneChips? for the assessment of NHP expression patterns can be effectively evaluated by analyzing the hybridization behaviour of ISC probesets. Appropriate normalization methods were identified that further improve the reliability of human GeneChips? for interspecies (human vs NHP) comparisons. Results ISC probesets in each of the seven Affymetrix GeneChip? platforms (U133Plus2.0, U133A, U133B, U95Av2, U95B, Focus and HuGeneFL) were identified for both monkey and chimpanzee. Expression data was generated from peripheral blood mononuclear cells (PBMCs) of 12 human and 8 monkey (Indian origin Rhesus macaque ) samples using the Focus GeneChip?. Analysis of both qualitative detection calls and quantitative signal intensities showed that intra-species reproducibility (human vs. human or monkey vs. monkey) was much higher than interspecies reproducibility (human vs. monkey). ISC probesets exhibited higher interspecies reproducibility than the overall expressed probesets. Importantly, appropriate normalization methods could be leveraged to greatly improve interspecies correlations. The correlation coefficients between human (average of 12 samples) and monkey (average of 8 Rhesus macaque samples) are 0.725, 0.821 and 0.893 for MAS5.0 (Microarray Suite version 5.0), dChip and RMA (Robust Multi-chip Average) normalization method, respectively. Conclusion It is feasible to use Affymetrix human GeneChip? platforms to assess the expression profiles of NHP for intra-species studies. Caution must be taken for interspecies studies since unsuitable probesets will result in spurious differentially regulated genes between human and NHP. RMA normalization method and ISC probesets are recommended for interspecies studies.
机译:背景尽管研究人员已使用Affymetrix人类GeneChip ?版本评估了非人类灵长类动物(NHP)样品中的表达模式,但尚未进行全面的序列分析研究来证明所设计的探针序列检测人类成绩单的方法与NHP中的直系同源物可靠杂交。通过将探针序列与NHP中表达的序列标签(EST)进行比对,在人类GeneChip ?平台上鉴定了具有两个或多个与NHP中EST互补的探针的物种间保守(ISC)探针集。通过分析ISC探针组的杂交行为,可以有效地评估人类GeneChips ?在评估NHP表达模式中的实用性。鉴定出适当的归一化方法可以进一步提高人类GeneChips ?在种间(人类与NHP)比较中的可靠性。结果在猴子和黑猩猩的七个Affymetrix GeneChip ?平台(U133Plus2.0,U133A,U133B,U95Av2,U95B,Focus和HuGeneFL)中,分别确定了ISC探针集。使用Focus GeneChip ?从12个人和8只猴子(印度猕猴)的外周血单核细胞(PBMC)生成表达数据。对定性检测信号和定量信号强度的分析表明,种内可重复性(人与人或猴与猴)远高于种间可重复性(人与猴)。 ISC探针集显示出比总表达探针集更高的种间重现性。重要的是,可以利用适当的标准化方法来大大改善种间的相关性。对于MAS5.0(Microarray Suite版本5.0),dChip和RMA(鲁棒多芯片平均)归一化方法,人(平均12个样本)和猴子(平均8个恒河猴)的相关系数分别为0.725、0.821和0.893。 , 分别。结论使用Affymetrix人类GeneChip ?平台评估NHP的表达谱用于种内研究是可行的。种间研究必须谨慎,因为不合适的探针集会导致人与NHP之间的假性差异调控基因。建议将RMA归一化方法和ISC探针集用于种间研究。

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