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首页> 外文期刊>EBioMedicine >Capturing functional long non-coding RNAs through integrating large-scale causal relations from gene perturbation experiments
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Capturing functional long non-coding RNAs through integrating large-scale causal relations from gene perturbation experiments

机译:通过整合基因微扰实验中的大规模因果关系来捕获功能性长非编码RNA

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Characterizing functions of long noncoding RNAs (lncRNAs) remains a major challenge, mostly due to the lack of lncRNA-involved regulatory relationships. A wide array of genome-wide expression profiles generated by gene perturbation have been widely used to capture causal links between perturbed genes and response genes. Through annotating >600 gene perturbation profiles, over 354,000 causal relationships between perturbed genes and lncRNAs were identified. This large-scale resource of causal relations inspired us to develop a novel computational approach LnCAR for inferring lncRNAs' functions, which showed a higher accuracy than the co-expression based approach. By application of LnCAR to the cancer hallmark processes, we identified 38 lncRNAs involved in distinct carcinogenic processes. The “activating invasion & metastasis” related lncRNAs were strongly associated with metastatic progression in various cancer types and could act as a predictor of cancer metastasis. Meanwhile, the “evading immune destruction” related lncRNAs showed significant associations with immune infiltration of various immune cells and, importantly, can predict response to anti-PD-1 immunotherapy, suggesting their potential roles as biomarkers for immune therapy. Taken together, our approach provides a novel way to systematically reveal functions of lncRNAs, which will be helpful for further experimental exploration and clinical translational research of lncRNAs.
机译:长的非编码RNA(lncRNA)的功能表征仍然是一个主要挑战,主要是由于缺乏lncRNA参与的调控关系。由基因扰动产生的广泛的全基因组表达谱已被广泛用于捕获扰动基因和响应基因之间的因果关系。通过注释> 600个基因扰动图谱,发现了354,000个扰动基因与lncRNA之间的因果关系。这种大规模的因果关系资源激发了我们开发一种新颖的计算方法LnCAR来推断lncRNA的功能,与基于共表达的方法相比,该方法显示出更高的准确性。通过将LnCAR应用于癌症标志性过程,我们确定了38个参与不同致癌过程的lncRNA。与“激活侵袭和转移”相关的lncRNA与多种癌症类型的转移进程密切相关,并可作为癌症转移的预测因子。同时,“逃避免疫破坏”相关的lncRNAs与各种免疫细胞的免疫浸润显着相关,并且重要的是,可以预测对PD-1免疫疗法的反应,表明其作为免疫疗法的生物标记物的潜在作用。综上所述,我们的方法提供了一种新颖的方式来系统地揭示lncRNA的功能,这将有助于lncRNA的进一步实验探索和临床转化研究。

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