CRAK-Velo: Chromatin Accessibility Kinetics integration improves RNA Velocity estimation

Nour El Kazwini, Mingze Gao, Idris Kouadri Boudjelthia, Fangxin Cai, Yuanhua Huang, Guido Sanguinetti
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Abstract

RNA velocity has recently emerged as a key tool in the analysis of single-cell transcriptomic data, yet connecting RNA velocity analyses to underlying regulatory processes has proved challenging. Here we propose CRAK-Velo, a semi-mechanistic model which integrates chromatin accessibility data in the estimation of RNA velocities. CRAK-Velo provides biologically consistent estimates of developmental flows and enables accurate cell-type deconvolution, while additionally shining light on regulatory processes at the level of interactions between genes and chromatin regions.
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CRAK-Velo:染色质可及性动力学集成改进了 RNA 速度估算
近来,RNA 速度已成为分析单细胞转录组数据的重要工具,然而将 RNA 速度分析与潜在调控过程联系起来却很有挑战性。在这里,我们提出了 CRAK-Velo,这是一种半机制模型,它将染色质可及性数据整合到 RNA 速度的估算中。CRAK-Velo 提供了生物学上一致的发育流估计值,并实现了准确的细胞类型解旋,同时还揭示了基因与染色质区域之间相互作用水平上的调控过程。
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