Mohammadnejad Afsaneh, Baumbach Jan, Li Weilong, Lund Jesper, Larsen Martin J, Li Shuxia, Mengel-From Jonas, Michel Tanja Maria, Christiansen Lene, Christensen Kaare, Hjelmborg Jacob, Tan Qihua
Unit of Epidemiology, Biostatistics and Biodemography, Department of Public Health, University of Southern Denmark, Denmark.
Computational Biomedicine, Department of Mathematics and Computer Science, University of Southern Denmark, Denmark; Chair of Computational Systems Biology, University of Hamburg, Hamburg, Germany.
J Psychiatr Res. 2021 Aug;140:197-204. doi: 10.1016/j.jpsychires.2021.05.074. Epub 2021 Jun 2.
Cognitive impairment is the most prominent symptom in neurodegenerative disorders affecting quality of life and mortality. However, despite years of research, the molecular mechanism underlying the regulation of cognitive function and its impairment is poorly understood. This study aims to elucidate the role of long non-coding RNAs (lncRNAs) expression and lncRNA-mRNA interaction networks, by analyzing lncRNA expression in whole blood samples of 400 middle and old aged monozygotic twins in association with cognitive function using both linear models and a generalized correlation coefficient (GCC) to capture the diverse patterns of correlation. We detected 13 probes (p < 1e-03) displaying nonlinear and 7 probes (p < 1e-03) showing linear correlations. After combining the results, we identified 20 lncRNA probes with p < 1e-03. The top lncRNA probes were annotated to genes, along with the non-coding MALAT1, that play roles in neurodegenerative diseases. The top lncRNAs were linked to functional clusters including peptidyl-glycine modification, vascular smooth muscle cells, mitotic spindle organization and protein tyrosine phosphatase. In addition, mapping of the top significant lncRNAs to the lncRNA-mRNA interaction network detected significantly enriched biological pathways involving neuroactive ligand-receptor interaction, proteasome and chemokines. We show that GCC served as a complementary approach in detecting lncRNAs missed by the conventional linear models. A combination of GCC and linear models identified lncRNAs of diverse patterns of association enriched for GO biological and molecular functions meaningful in cognitive performance and cognitive decline. The novel lncRNA regulatory network further contributed to detect significant pathways implicated in cognition.
认知障碍是影响生活质量和死亡率的神经退行性疾病中最突出的症状。然而,尽管经过多年研究,认知功能调节及其损伤背后的分子机制仍知之甚少。本研究旨在通过分析400对中老年同卵双胞胎全血样本中的长链非编码RNA(lncRNA)表达以及lncRNA与mRNA的相互作用网络,结合认知功能,使用线性模型和广义相关系数(GCC)来捕捉不同的相关模式,以阐明lncRNA的作用。我们检测到13个探针(p < 1e - 03)显示非线性相关性,7个探针(p < 1e - 03)显示线性相关性。综合结果后,我们鉴定出20个p < 1e - 03的lncRNA探针。排名靠前的lncRNA探针被注释到与神经退行性疾病相关的基因以及非编码MALAT1上。排名靠前的lncRNA与包括肽基甘氨酸修饰、血管平滑肌细胞、有丝分裂纺锤体组织和蛋白酪氨酸磷酸酶在内的功能簇相关。此外,将排名最显著的lncRNA映射到lncRNA - mRNA相互作用网络中,检测到显著富集的生物途径,涉及神经活性配体 - 受体相互作用、蛋白酶体和趋化因子。我们表明,GCC作为一种补充方法,可检测到传统线性模型遗漏的lncRNA。GCC和线性模型的结合鉴定出了具有不同关联模式的lncRNA,这些lncRNA在认知表现和认知衰退方面富含具有生物学和分子功能意义的基因本体(GO)。新的lncRNA调控网络进一步有助于检测与认知相关的重要途径。