State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China.
Hangzhou Hongquan Internet of Things Technology Co., Ltd., Hangzhou 310012, China.
Int J Mol Sci. 2021 Jul 27;22(15):8012. doi: 10.3390/ijms22158012.
G-quadruplexes are the non-canonical nucleic acid structures that are preferentially formed in G-rich regions. This structure has been shown to be associated with many biological functions. Regardless of the broad efforts on DNA G-quadruplexes, we still have limited knowledge on RNA G-quadruplexes, especially in a transcriptome-wide manner. Herein, by integrating the DMS-seq and the bioinformatics pipeline, we profiled and depicted the RNA G-quadruplexes in the human transcriptome. The genes that contain RNA G-quadruplexes in their specific regions are significantly related to immune pathways and the COVID-19-related gene sets. Bioinformatics analysis reveals the potential regulatory functions of G-quadruplexes on miRNA targeting at the scale of the whole transcriptome. In addition, the G-quadruplexes are depleted in the putative, not the real, PAS-strong poly(A) sites, which may weaken the possibility of such sites being the real cleaved sites. In brief, our study provides insight into the potential function of RNA G-quadruplexes in post-transcription.
四链体是优先在富含 G 的区域形成的非经典核酸结构。这种结构已被证明与许多生物功能有关。尽管人们广泛研究 DNA 四链体,但我们对 RNA 四链体的了解仍然有限,特别是在全转录组范围内。在此,我们通过整合 DMS-seq 和生物信息学分析流程,对人类转录组中的 RNA 四链体进行了描绘和分析。在特定区域含有 RNA 四链体的基因与免疫途径和与 COVID-19 相关的基因集显著相关。生物信息学分析揭示了 G-四联体在 miRNA 靶向方面的潜在调控功能,规模达到整个转录组。此外,G-四联体在假定的、而非真实的 PAS 强 poly(A) 位点中被耗尽,这可能削弱了这些位点成为真实切割位点的可能性。简而言之,我们的研究为 RNA 四链体在后转录水平的潜在功能提供了新的认识。