De Jong Simone, Neeleman Marjolein, Luykx Jurjen J, ten Berg Maarten J, Strengman Eric, Den Breeijen Hanneke H, Stijvers Leon C, Buizer-Voskamp Jacobine E, Bakker Steven C, Kahn René S, Horvath Steve, Van Solinge Wouter W, Ophoff Roel A
Center for Neurobehavioral Genetics, Semel Institute for Neuroscience and Human Behavior, University of California, Los Angeles, Los Angeles, CA, USA.
Hum Mol Genet. 2014 May 15;23(10):2721-8. doi: 10.1093/hmg/ddt665. Epub 2014 Jan 7.
Seasonal patterns in behavior and biological parameters are widespread. Here, we examined seasonal changes in whole blood gene expression profiles of 233 healthy subjects. Using weighted gene co-expression network analysis, we identified three co-expression modules showing circannual patterns. Enrichment analysis suggested that this signal stems primarily from red blood cells and blood platelets. Indeed, a large clinical database with 51 142 observations of blood cell counts over 3 years confirmed a corresponding seasonal pattern of counts of red blood cells, reticulocytes and platelets. We found no direct evidence that these changes are linked to genes known to be key players in regulating immune function or circadian rhythm. It is likely, however, that these seasonal changes in cell counts and gene expression profiles in whole blood represent biological and clinical relevant phenomena. Moreover, our findings highlight possible confounding factors relevant to the study of gene expression profiles in subjects collected at geographical locations with disparaging seasonality patterns.
行为和生物学参数的季节性模式广泛存在。在此,我们研究了233名健康受试者全血基因表达谱的季节性变化。使用加权基因共表达网络分析,我们识别出三个显示周年模式的共表达模块。富集分析表明,该信号主要源于红细胞和血小板。确实,一个包含51142例3年血细胞计数观察结果的大型临床数据库证实了红细胞、网织红细胞和血小板计数存在相应的季节性模式。我们没有发现直接证据表明这些变化与已知在调节免疫功能或昼夜节律中起关键作用的基因有关。然而,全血细胞计数和基因表达谱的这些季节性变化很可能代表了生物学和临床相关现象。此外,我们的研究结果突出了在具有不同季节性模式的地理位置收集的受试者中,与基因表达谱研究相关的可能混杂因素。