Figure S1. Characterization of dCas9-EGFP knock-in mice. Figure S2. Visualizing telomere dynamics in dCas9-EGFP knock-in mouse liver. Figure S3. CRISPR in vivo imaging of major satellite and single genomic locus in X chromosome in dCas9-EGFP knock-in mice. Figure S4. Compare the telomere dynamics in vivo and in vitro. Table S1. Primer sequences. Table S2. Sequences of plasmids. (PDF 1413Â kb
Comparison of induced indels between germline and somatic tissues. (a) Plot shows the same data as F...
Figure S1. FISH analysis using a probe for CRE labeled in red and a mouse BAC probe (RP24-257H11) la...
Figure S6. Analysis of the Usp45 project. The figure shows the PCR amplification of the genomic regi...
Figure S1. Cytogenetic analysis of the human cell line LO2. Figure S2. NHEJ-based knock-in of ires-G...
Figure S2. CRISPR-Cas9 targeting strategy and editing efficiency. (a) Schematic of exon 1 of human P...
CRISPR/Cas9 induced DSBs at the Rosa26 intronic XbaI site in mouse zygotes; Figure S2: Sequence anal...
Figure S1. Cloning strategy to make donor plasmids. Figure S2. CRISPR-SONIC enables IRES-GFP integra...
A figure showing the TERT copy number analysis for various cell lines generated in this study. (PDF ...
Figure S1. CRISPR data overview and quality assessment. Figure S2. Structural rearrangements associa...
Additional file 1: Table S1. List of target locations with sgRNA sequences, primers for targeted PCR...
Figure S12. Examples of unexpected point mutations in the F0 animals obtained from the co-injection ...
Figure S3. A, B. Examples of mutagenized loxP sites identified upon TA cloning PCR products from lox...
Figure S13. Unexpected outcome of CRISPR/Cas9-aided mutagenesis. The figure illustrates an example o...
Figure S2. PCR amplification of sgRNA region for deep-sequencing analysis. (A) Successful transfecti...
Figure S1. Screening by Sanger sequencing of animals for the generation of a Syt7 conditional allele...
Comparison of induced indels between germline and somatic tissues. (a) Plot shows the same data as F...
Figure S1. FISH analysis using a probe for CRE labeled in red and a mouse BAC probe (RP24-257H11) la...
Figure S6. Analysis of the Usp45 project. The figure shows the PCR amplification of the genomic regi...
Figure S1. Cytogenetic analysis of the human cell line LO2. Figure S2. NHEJ-based knock-in of ires-G...
Figure S2. CRISPR-Cas9 targeting strategy and editing efficiency. (a) Schematic of exon 1 of human P...
CRISPR/Cas9 induced DSBs at the Rosa26 intronic XbaI site in mouse zygotes; Figure S2: Sequence anal...
Figure S1. Cloning strategy to make donor plasmids. Figure S2. CRISPR-SONIC enables IRES-GFP integra...
A figure showing the TERT copy number analysis for various cell lines generated in this study. (PDF ...
Figure S1. CRISPR data overview and quality assessment. Figure S2. Structural rearrangements associa...
Additional file 1: Table S1. List of target locations with sgRNA sequences, primers for targeted PCR...
Figure S12. Examples of unexpected point mutations in the F0 animals obtained from the co-injection ...
Figure S3. A, B. Examples of mutagenized loxP sites identified upon TA cloning PCR products from lox...
Figure S13. Unexpected outcome of CRISPR/Cas9-aided mutagenesis. The figure illustrates an example o...
Figure S2. PCR amplification of sgRNA region for deep-sequencing analysis. (A) Successful transfecti...
Figure S1. Screening by Sanger sequencing of animals for the generation of a Syt7 conditional allele...
Comparison of induced indels between germline and somatic tissues. (a) Plot shows the same data as F...
Figure S1. FISH analysis using a probe for CRE labeled in red and a mouse BAC probe (RP24-257H11) la...
Figure S6. Analysis of the Usp45 project. The figure shows the PCR amplification of the genomic regi...