Bierman Rob, Dave Jui M, Greif Daniel M, Salzman Julia
Department of Biochemistry Stanford University, Stanford, United States.
Department of Biomedical Data Science Stanford University, New Haven, United States.
Elife. 2024 Dec 19;12:RP87517. doi: 10.7554/eLife.87517.
Targeted low-throughput studies have previously identified subcellular RNA localization as necessary for cellular functions including polarization, and translocation. Furthermore, these studies link localization to RNA isoform expression, especially 3' Untranslated Region (UTR) regulation. The recent introduction of genome-wide spatial transcriptomics techniques enables the potential to test if subcellular localization is regulated in situ pervasively. In order to do this, robust statistical measures of subcellular localization and alternative poly-adenylation (APA) at single-cell resolution are needed. Developing a new statistical framework called SPRAWL, we detect extensive cell-type specific subcellular RNA localization regulation in the mouse brain and to a lesser extent mouse liver. We integrated SPRAWL with a new approach to measure cell-type specific regulation of alternative 3' UTR processing and detected examples of significant correlations between 3' UTR length and subcellular localization. Included examples, , , , and have subcellular localization in the mouse brain highly correlated with regulated 3' UTR processing that includes the use of unannotated, but highly conserved, 3' ends. Together, SPRAWL provides a statistical framework to integrate multi-omic single-cell resolved measurements of gene-isoform pairs to prioritize an otherwise impossibly large list of candidate functional 3' UTRs for functional prediction and study. In these studies of data from mice, SPRAWL predicts that 3' UTR regulation of subcellular localization may be more pervasive than currently known.
靶向低通量研究此前已确定亚细胞RNA定位对于包括极化和易位在内的细胞功能是必需的。此外,这些研究将定位与RNA异构体表达联系起来,尤其是3'非翻译区(UTR)调控。最近引入的全基因组空间转录组学技术使得有可能测试亚细胞定位是否在原位普遍受到调控。为了做到这一点,需要在单细胞分辨率下对亚细胞定位和可变聚腺苷酸化(APA)进行稳健的统计测量。我们开发了一种名为SPRAWL的新统计框架,在小鼠大脑中检测到广泛的细胞类型特异性亚细胞RNA定位调控,在小鼠肝脏中程度较轻。我们将SPRAWL与一种测量可变3'UTR加工的细胞类型特异性调控的新方法相结合,并检测到3'UTR长度与亚细胞定位之间显著相关的例子。包括的例子, , , ,和 在小鼠大脑中的亚细胞定位与受调控的3'UTR加工高度相关,其中包括使用未注释但高度保守的3'末端。总之,SPRAWL提供了一个统计框架,用于整合基因异构体对的多组学单细胞解析测量,以便在功能预测和研究中对原本庞大得难以处理的候选功能性3'UTR列表进行优先级排序。在这些对小鼠数据的研究中,SPRAWL预测亚细胞定位的3'UTR调控可能比目前已知的更为普遍。