Chemically modified guide RNAs enhance CRISPR-Cas13 knockdown in human cells is a research paper published in Cell chemical biology (2021). On theSindex it has a DataRank of 0. It has been cited 63 times.
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National Human Genome Research Institute
Grant: DP2HG010099
National Cancer Institute
Grant: R01CA218668
National Institute of General Medical Sciences
Grant: R01GM138635
Defense Advanced Research Projects Agency
Grant: D18AP00053
National Institutes of Health
Grant: 5R01EY000053-19
NEURAL MECHANISMS OF VISION
National Institutes of Health
Grant: 1R01GM138635-01
Organizational principles and functional role of 3D enhancer hubs in cell fate decisions
National Institutes of Health
Grant: 3R01CA218668-04S2
Computational Methods for Identifying Non-coding Cancer Drivers
National Institutes of Health
Grant: 3DP2HG010099-01S2
In situ functional genomics to understand transcriptional regulation
Cancer Research Institute
New York University
National Institutes of Health
Brain and Behavior Research Foundation
New York Genome Center
FWCI
4.00
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Additional file 1 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 1 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 7 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 7 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 8 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 8 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 6 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 5 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 4 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 2 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 2 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 5 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 6 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 3 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 4 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos
Additional file 3 of CRISPR-dCas13-tracing reveals transcriptional memory and limited mRNA export in developing zebrafish embryos