Additional file 11: Movie 4. SPT of mESC expressing HP1γR38/9A cultured in the absence of LIF. Movie of representative mESCs expressing HP1γR38/9A cultured in the absence of LIF for 72 h of experiment (i) labelled with HaloTag–JF549 ligand imaged at 561 nm. Fluorescent images were collected as movies of 1000 frames at 500 ms time resolutio
Additional file 12: Figure S6. HP1γ R38 and R39 determine chromatin residence time in differentiatin...
Heterochromatin protein 1 (HP1) is a highly conserved and abundant non-histone chromosomal protein i...
Contains fulltext : 48354.pdf (publisher's version ) (Closed access)Changes in chr...
Additional file 10: Movie 3. SPT of mESC expressing HP1γWT cultured in the absence of LIF. Movie of ...
Additional file 9: Movie 2. SPT of mESC expressing HP1γR38/9A cultured in the presence of LIF. Movie...
Additional file 7: Table S2. STP data of single replicates. This file contains a summary of all biol...
Additional file 6: Figure S5. Single-particle tracking to measure HP1 dynamics in vivo. A Immunoblot...
Additional file 5: Figure S4. Differentiation of mESCs. A Immunoprecipitation (IP) of endogenous HP1...
Additional file 1: Figure S1. Citrullination of HP1γ identified by MS/MS. A Multiple sequence alignm...
Additional file 3: Table S1. Raw BLI data. Raw BLI data of GST, GST-HP1γWT, R38/9A and R38/9K protei...
Additional file 2: Figure S2. Mutation of R38 and R39 impairs HP1γ’s binding to H3K9me3 in vitro. A ...
Additional file 4: Figure S3. PADI4 citrullinates HP1γ in vitro. A/B As a known PADI4 target, recomb...
BACKGROUND: Stem cell differentiation involves major chromatin reorganisation, heterochromatin forma...
Background: Stem cell differentiation involves major chromatin reorganisation, heterochromatin forma...
Abstract Background Stem cell differentiation involves major chromatin reorganisation, heterochromat...
Additional file 12: Figure S6. HP1γ R38 and R39 determine chromatin residence time in differentiatin...
Heterochromatin protein 1 (HP1) is a highly conserved and abundant non-histone chromosomal protein i...
Contains fulltext : 48354.pdf (publisher's version ) (Closed access)Changes in chr...
Additional file 10: Movie 3. SPT of mESC expressing HP1γWT cultured in the absence of LIF. Movie of ...
Additional file 9: Movie 2. SPT of mESC expressing HP1γR38/9A cultured in the presence of LIF. Movie...
Additional file 7: Table S2. STP data of single replicates. This file contains a summary of all biol...
Additional file 6: Figure S5. Single-particle tracking to measure HP1 dynamics in vivo. A Immunoblot...
Additional file 5: Figure S4. Differentiation of mESCs. A Immunoprecipitation (IP) of endogenous HP1...
Additional file 1: Figure S1. Citrullination of HP1γ identified by MS/MS. A Multiple sequence alignm...
Additional file 3: Table S1. Raw BLI data. Raw BLI data of GST, GST-HP1γWT, R38/9A and R38/9K protei...
Additional file 2: Figure S2. Mutation of R38 and R39 impairs HP1γ’s binding to H3K9me3 in vitro. A ...
Additional file 4: Figure S3. PADI4 citrullinates HP1γ in vitro. A/B As a known PADI4 target, recomb...
BACKGROUND: Stem cell differentiation involves major chromatin reorganisation, heterochromatin forma...
Background: Stem cell differentiation involves major chromatin reorganisation, heterochromatin forma...
Abstract Background Stem cell differentiation involves major chromatin reorganisation, heterochromat...
Additional file 12: Figure S6. HP1γ R38 and R39 determine chromatin residence time in differentiatin...
Heterochromatin protein 1 (HP1) is a highly conserved and abundant non-histone chromosomal protein i...
Contains fulltext : 48354.pdf (publisher's version ) (Closed access)Changes in chr...