Ramirez Andrew, Orcutt-Jahns Brian T, Pascoe Sean, Abraham Armaan, Remigio Breanna, Thomas Nathaniel, Meyer Aaron S
Department of Bioengineering, University of California, Los Angeles (UCLA), CA, USA.
Department of Molecular Biosciences, Northwestern University, Evanston, IL, USA.
bioRxiv. 2025 Mar 22:2024.07.29.605698. doi: 10.1101/2024.07.29.605698.
Effective and scalable exploration and analysis tools are vital for the extraction of insights from large-scale single-cell data. However, current techniques for modeling single-cell studies performed across experimental conditions (e.g., samples, perturbations, or patients) require restrictive assumptions, lack flexibility, or do not adequately deconvolute condition-to-condition variation from cell-to-cell variation. Here, we report that Reduction and Insight in Single-cell Exploration (RISE), an adaptation of the tensor decomposition method PARAFAC2, enables the dimensionality reduction and analysis of single-cell data across conditions. We demonstrate the benefits of RISE across two distinct examples of single-cell RNA-sequencing experiments of peripheral immune cells: pharmacologic drug perturbations and systemic lupus erythematosus (SLE) patient samples. RISE enables straightforward associations of gene variation patterns with specific patients or perturbations, while connecting each coordinated change to single cells without requiring cell type annotations. The theoretical grounding of RISE suggests a unified framework for many single-cell data modeling tasks. Thus, RISE provides an intuitive universal dimensionality reduction approach for multi-sample single-cell studies across diverse biological contexts.
有效且可扩展的探索与分析工具对于从大规模单细胞数据中提取见解至关重要。然而,当前用于对跨实验条件(例如样本、扰动或患者)进行的单细胞研究进行建模的技术需要严格的假设,缺乏灵活性,或者不能充分地将条件间的变异与细胞间的变异解卷积。在此,我们报告单细胞探索中的降维和洞察(RISE),这是张量分解方法PARAFAC2的一种改编,能够对跨条件的单细胞数据进行降维和分析。我们通过外周免疫细胞的单细胞RNA测序实验的两个不同例子展示了RISE的优势:药物扰动和系统性红斑狼疮(SLE)患者样本。RISE能够将基因变异模式与特定患者或扰动直接关联起来,同时在无需细胞类型注释的情况下将每个协调变化与单细胞联系起来。RISE的理论基础为许多单细胞数据建模任务提供了一个统一框架。因此,RISE为跨不同生物学背景的多样本单细胞研究提供了一种直观的通用降维方法。