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SCIFER:一种在单一位点分辨率下分析单细胞中LINE-1 mRNA表达的方法。

SCIFER: approach for analysis of LINE-1 mRNA expression in single cells at a single locus resolution.

作者信息

Stow Emily C, Baddoo Melody, LaRosa Alexis J, LaCoste Dawn, Deininger Prescott, Belancio Victoria

机构信息

Tulane Cancer Center, Tulane Health Sciences Center, 1700 Tulane Ave, New Orleans, LA, 70112, USA.

Department of Structural and Cellular Biology, Tulane School of Medicine, 1430 Tulane Ave, New Orleans, 70112, USA.

出版信息

Mob DNA. 2022 Aug 26;13(1):21. doi: 10.1186/s13100-022-00276-0.

Abstract

BACKGROUND

Endogenous expression of L1 mRNA is the first step in an L1-initiated mutagenesis event. However, the contribution of individual cell types to patterns of organ-specific L1 mRNA expression remains poorly understood, especially at single-locus resolution. We introduce a method to quantify expression of mobile elements at the single-locus resolution in scRNA-Seq datasets called Single Cell Implementation to Find Expressed Retrotransposons (SCIFER). SCIFER aligns scRNA-Seq reads uniquely to the genome and extracts alignments from single cells by cell-specific barcodes. In contrast to the alignment performed using default parameters, this alignment strategy increases accuracy of L1 locus identification by retaining only reads that are uniquely mapped to individual L1 loci. L1 loci expressed in single cells are unambiguously identified using a list of L1 loci manually validated to be expressed in bulk RNA-Seq datasets generated from the same cell line or organ.

RESULTS

Validation of SCIFER using MCF7 cells determined technical parameters needed for optimal detection of L1 expression in single cells. We show that unsupervised analysis of L1 expression in single cells exponentially inflates both the levels of L1 expression and the number of expressed L1 loci. Application of SCIFER to analysis of scRNA-Seq datasets generated from mouse and human testes identified that mouse Round Spermatids and human Spermatogonia, Spermatocytes, and Round Spermatids express the highest levels of L1 mRNA. Our analysis also determined that similar to mice, human testes from unrelated individuals share as much as 80% of expressed L1 loci. Additionally, SCIFER determined that individual mouse cells co-express different L1 sub-families and different families of transposable elements, experimentally validating their co-existence in the same cell.

CONCLUSIONS

SCIFER detects mRNA expression of individual L1 loci in single cells. It is compatible with scRNA-Seq datasets prepared using traditional sequencing methods. Validated using a human cancer cell line, SCIFER analysis of mouse and human testes identified key cell types supporting L1 expression in these species. This will further our understanding of differences and similarities in endogenous L1 mRNA expression patterns in mice and humans.

摘要

背景

L1 mRNA的内源性表达是L1引发的诱变事件的第一步。然而,个体细胞类型对器官特异性L1 mRNA表达模式的贡献仍知之甚少,尤其是在单基因座分辨率水平。我们介绍了一种在单细胞RNA测序(scRNA-Seq)数据集中以单基因座分辨率量化移动元件表达的方法,称为单细胞实现以找到表达的逆转座子(SCIFER)。SCIFER将scRNA-Seq reads唯一地比对到基因组,并通过细胞特异性条形码从单细胞中提取比对结果。与使用默认参数进行的比对相比,这种比对策略通过仅保留唯一比对到单个L1基因座的reads来提高L1基因座识别的准确性。使用在来自相同细胞系或器官的批量RNA-Seq数据集中经手动验证表达的L1基因座列表,明确鉴定单细胞中表达的L1基因座。

结果

使用MCF7细胞对SCIFER进行验证,确定了在单细胞中最佳检测L1表达所需的技术参数。我们表明,对单细胞中L1表达的无监督分析会使L1表达水平和表达的L1基因座数量呈指数级膨胀。将SCIFER应用于对从小鼠和人类睾丸生成的scRNA-Seq数据集的分析,确定小鼠圆形精子细胞以及人类精原细胞、精母细胞和圆形精子细胞表达的L1 mRNA水平最高。我们的分析还确定,与小鼠类似,来自无关个体的人类睾丸共享高达80%的表达L1基因座。此外,SCIFER确定单个小鼠细胞共表达不同的L1亚家族和不同的转座子家族,通过实验验证了它们在同一细胞中的共存。

结论

SCIFER可检测单细胞中单个L1基因座的mRNA表达。它与使用传统测序方法制备的scRNA-Seq数据集兼容。通过人类癌细胞系进行验证后,对小鼠和人类睾丸的SCIFER分析确定了这些物种中支持L1表达的关键细胞类型。这将进一步加深我们对小鼠和人类内源性L1 mRNA表达模式差异和相似性的理解。

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