RNA abundance is a powerful indicator of the state of individual cells. Single-cell RNA sequencing can reveal RNA abundance with high quantitative accuracy, sensitivity and throughput 1 . However, this approach captures only a static snapshot at a point in time, posing a challenge for the analysis of time-resolved phenomena such as embryogenesis or tissue regeneration. Here we show that RNA velocity—the time derivative of the gene expression state—can be directly estimated by distinguishing between unspliced and spliced mRNAs in common single-cell RNA sequencing protocols. RNA velocity is a high-dimensional vector that predicts the future state of individual cells on a timescale of hours. We validate its accuracy in the neural crest lineage...
Single cell transcriptomic technologies enable genome-wide gene expression measurements in individua...
Single-cell (sc)RNA-seq, together with RNA velocity and metabolic labeling, reveals cellular states ...
In eukaryotic cells, RNA polymerase II synthesizes mRNA in three stages, initiation, elongation, and...
RNA abundance is a powerful indicator of the state of individual cells. Single-cell RNA sequencing c...
Technological developments have led to an explosion of high-throughput single-cell data, which are r...
The simultaneous quantification of protein and RNA makes possible the inference of past, present, an...
Applying a kinetic model of RNA transcription and splicing, La Manno et al. (2018) predict changes i...
Transcript regulation is essential for cell function, and misregulation can lead to disease. Despite...
Spatiotemporal regulation of the cellular transcriptome is crucial for proper protein expression and...
Studying gene activity in single cells is an important factor in understanding cell functions. Cell ...
Experimental single-cell approaches are becoming widely used for many purposes, including investigat...
Ribonucleic acid (RNA) is a biological molecule that exists in the cell of virtually all kinds of kn...
A few years ago, it was proposed to use the simultaneous quantification of unspliced and spliced mes...
SummaryTranscript regulation is essential for cell function, and misregulation can lead to disease. ...
Single-cell RNA sequencing dataset of the developing mouse brain at E10 and E11, produced by [1], an...
Single cell transcriptomic technologies enable genome-wide gene expression measurements in individua...
Single-cell (sc)RNA-seq, together with RNA velocity and metabolic labeling, reveals cellular states ...
In eukaryotic cells, RNA polymerase II synthesizes mRNA in three stages, initiation, elongation, and...
RNA abundance is a powerful indicator of the state of individual cells. Single-cell RNA sequencing c...
Technological developments have led to an explosion of high-throughput single-cell data, which are r...
The simultaneous quantification of protein and RNA makes possible the inference of past, present, an...
Applying a kinetic model of RNA transcription and splicing, La Manno et al. (2018) predict changes i...
Transcript regulation is essential for cell function, and misregulation can lead to disease. Despite...
Spatiotemporal regulation of the cellular transcriptome is crucial for proper protein expression and...
Studying gene activity in single cells is an important factor in understanding cell functions. Cell ...
Experimental single-cell approaches are becoming widely used for many purposes, including investigat...
Ribonucleic acid (RNA) is a biological molecule that exists in the cell of virtually all kinds of kn...
A few years ago, it was proposed to use the simultaneous quantification of unspliced and spliced mes...
SummaryTranscript regulation is essential for cell function, and misregulation can lead to disease. ...
Single-cell RNA sequencing dataset of the developing mouse brain at E10 and E11, produced by [1], an...
Single cell transcriptomic technologies enable genome-wide gene expression measurements in individua...
Single-cell (sc)RNA-seq, together with RNA velocity and metabolic labeling, reveals cellular states ...
In eukaryotic cells, RNA polymerase II synthesizes mRNA in three stages, initiation, elongation, and...