长链非编码rna的空间转录组分析揭示了组织特异性和在癌症中的功能作用。

Kang Xu, Xiyun Jin, Ya Luo, Haozhe Zou, Dezhong Lv, Liping Wang, Limei Fu, Yangyang Cai, Tingting Shao, Yongsheng Li, Juan Xu
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引用次数: 2

摘要

长链非编码rna (Long non-coding rna, lncRNAs)在维持组织形态和功能方面发挥着重要作用,其精确调控效果与表达模式密切相关。然而,lncrna在人类中的空间表达模式尚不清楚。在这里,我们构建了五个全面的人类lncrna转录组图谱,涵盖了数千个正常和疾病状态下的主要组织样本。lncRNA转录组在不同资源的相同组织中表现出高度一致性,在特定组织中表现出更高的复杂性。在每个资源中鉴定出组织升高(TE)的lncrna,并通过综合分析提炼出稳健的TE lncrna。我们在组织中检测到1至4684个健壮的TE lncrna;睾丸组织中数量最多,其次是脑组织。TE lncrna的功能分析表明其在相应的组织相关通路中发挥重要作用。此外,我们发现强大的TE lncrna的表达特征使其成为区分组织的有效生物标志物;TE lncRNAs也倾向于与癌症相关,表现出差异表达或与患者生存相关。综上所述,lncrna的空间分类是阐明lncrna在维持组织形态和组织收缩性疾病进展中的功能的起点。
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Spatial transcriptome analysis of long non-coding RNAs reveals tissue specificity and functional roles in cancer.

Long non-coding RNAs (lncRNAs) play a significant role in maintaining tissue morphology and functions, and their precise regulatory effectiveness is closely related to expression patterns. However, the spatial expression patterns of lncRNAs in humans are poorly characterized. Here, we constructed five comprehensive transcriptomic atlases of human lncRNAs covering thousands of major tissue samples in normal and disease states. The lncRNA transcriptomes exhibited high consistency within the same tissues across resources, and even higher complexity in specialized tissues. Tissue-elevated (TE) lncRNAs were identified in each resource and robust TE lncRNAs were refined by integrative analysis. We detected 1 to 4684 robust TE lncRNAs across tissues; the highest number was in testis tissue, followed by brain tissue. Functional analyses of TE lncRNAs indicated important roles in corresponding tissue-related pathways. Moreover, we found that the expression features of robust TE lncRNAs made them be effective biomarkers to distinguish tissues; TE lncRNAs also tended to be associated with cancer, and exhibited differential expression or were correlated with patient survival. In summary, spatial classification of lncRNAs is the starting point for elucidating the function of lncRNAs in both maintenance of tissue morphology and progress of tissue-constricted diseases.

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