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Single-Molecule Real-Time (SMRT) Full-Length RNA-Sequencing Reveals Novel and Distinct mRNA Isoforms in Human Bone Marrow Cell Subpopulations

机译:单分子实时(SMRT)全长RNA测序揭示了人类骨髓细胞亚群中的新型和不同的mRNA亚型。

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摘要

Hematopoietic cells are continuously replenished from progenitor cells that reside in the bone marrow. To evaluate molecular changes during this process, we analyzed the transcriptomes of freshly harvested human bone marrow progenitor (lineage-negative) and differentiated (lineage-positive) cells by single-molecule real-time (SMRT) full-length RNA-sequencing. This analysis revealed a ~5-fold higher number of transcript isoforms than previously detected and showed a distinct composition of individual transcript isoforms characteristic for bone marrow subpopulations. A detailed analysis of messenger RNA (mRNA) isoforms transcribed from the ANXA1 and EEF1A1 loci confirmed their distinct composition. The expression of proteins predicted from the transcriptome analysis was evaluated by mass spectrometry and validated previously unknown protein isoforms predicted e.g., for EEF1A1. These protein isoforms distinguished the lineage negative cell population from the lineage positive cell population. Finally, transcript isoforms expressed from paralogous gene loci (e.g., CFD, GATA2, HLA-A, B, and C) also distinguished cell subpopulations but were only detectable by full-length RNA sequencing. Thus, qualitatively distinct transcript isoforms from individual genomic loci separate bone marrow cell subpopulations indicating complex transcriptional regulation and protein isoform generation during hematopoiesis.
机译:造血细胞从位于骨髓的祖细胞中不断补充。为了评估此过程中的分子变化,我们通过单分子实时(SMRT)全长RNA测序分析了新鲜收获的人骨髓祖细胞(谱系阴性)和分化的(谱系阳性)细胞的转录组。该分析显示,转录亚型的数量比以前检测到的高约5倍,并且显示了骨髓亚群特有的单个转录亚型的独特组成。从ANXA1和EEF1A1基因座转录的信使RNA(mRNA)亚型的详细分析证实了它们的独特组成。从转录组分析预测的蛋白质的表达通过质谱法进行评估,并验证了先前未知的预测为例如EEF1A1的蛋白质同工型。这些蛋白同工型区分谱系阴性细胞群和谱系阳性细胞群。最后,从旁系基因位点(例如,CFD,GATA2,HLA-A,B和C)表达的转录本同工型也可以区分细胞亚群,但是只能通过全长RNA测序来检测。因此,从个体基因组位点定性上截然不同的转录亚型分离出骨髓细胞亚群,表明造血过程中复杂的转录调控和蛋白质同工型的产生。

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