实验描述
We used mouse ENCODE data along with complementary data from other laboratories to study the dynamics of occupancy and the role in gene regulation of the transcription factor TAL1, a critical regulator of hematopoiesis, at multiple stages of hematopoietic differentiation. We combined ChIP-seq and RNA-seq data in six mouse cell types representing a progression from multilineage precursors to differentiated erythroblasts and megakaryocytes. We found that sites of occupancy shift dramatically during commitment to the erythroid lineage, vary further during terminal maturation, and are strongly associated with changes in gene expression. In multilineage progenitors, the likely target genes are enriched for hematopoietic growth and functions associated with the mature cells of specific daughter lineages (such as megakaryocytes). In contrast, target genes in erythroblasts are specifically enriched for red cell functions. Furthermore, shifts in TAL1 occupancy during erythroid differentiation are associated with gene repression (dissociation) and induction (co-occupancy with GATA1). Based on both enrichment for transcription factor binding site motifs and co-occupancy determined by ChIP-seq, recruitment by GATA transcription factors appears to be a stronger determinant of TAL1 binding to chromatin than the canonical E-box binding site motif. Studies of additional proteins lead to the model that TAL1 regulates expression after being directed to a distinct subset of genomic binding sites in each cell type via its association with different complexes containing master regulators such as GATA2, ERG, and RUNX1 in multilineage cells and the lineage-specific master regulator GATA1 in erythroblasts. Combined ChIP-seq and RNA-seq data in six mouse cell types representing a progression from multilineage precursors to differentiated erythroblasts and megakaryocytes.
样本属性
age description
None, Embryonic day 0 (stem cell), embryonic day 14.5
antibody
None, CTCF, FLI1_(sc-356), GATA1_(SC-265), GATA2_(SC-9008), H3K27me3, H3K36me3, H3K4me1, H3K4me3, H3K9me3, Input, Pol2-4H8, TAL1_(SC-12984)
antibody antibodydescription
None, FLI1 (C-19) is an affinity purified rabbit polyclonal antibody raised against a peptide mapping at the C-terminus of FLI1 of mouse origin., goat polyclonal antibody; epitope mapping at the C-terminus of TAL1 of human origin, recommended for detection of TAL1 of mouse, rat and human origin. Antibody Target: TAL1, Mouse monoclonal to RNA polymerase II CTD repeat YSPTSPS antibody (4H8) - ChIP Grade. Antibody Target: POL24H8, Rabbit polyclonal antibody raised against amino acids 120-235 of GATA-2 of human origin. Antibody Target: GATA2, rabbit polyclonal, ChIP grade. Antibody Target: H3K9me3, rabbit polyclonal. Antibody Target: CTCF, rabbit polyclonal. Antibody Target: H3K27me3, rabbit polyclonal. Antibody Target: H3K36me3, rabbit polyclonal. Antibody Target: H3K4me1, rabbit polyclonal. Antibody Target: H3K4me3, rat monoclonal antibody raised against mouse recombinant GATA1; recommended for detection of GATA1 of mouse, rat and human origin. Antibody Target: GATA1
antibody description
None, Control signal which may be subtracted from experimental raw signal before peaks are called.
antibody targetdescription
None, CTCF zinc finger transcription factor. A sequence specific DNA binding protein that functions as an insulator, blocking enhancer activity. It has also been suggested to block the spreading of chromatin structure in certain instances., Fli1 (Friend leukemia virus integration 1) is a member of a family of genes identified on the basis of their homology to the v-Ets oncogene isolated from the E26 erythoblastosis virus., GATA1 is erythroid-specific and is responsible for the regulated transcription of erythroid genes., Histone H3 (mono methyl K4). Is associated with enhancers, and downstream of transcription starts., Histone H3 (tri methyl K4). Marks promoters that are active or poised to be activated., Histone H3 (tri methyl K9). Is associated with repressive heterochromatic state (silenced chromatin). NOTE CONTRAST to H3K9me1 which is associated with active and accessible regions., Histone H3 (tri-methyl K27). Marks promoters that are silenced by Polycomb proteins in a given lineage; large domains are found at inactive developmental loci., Histone H3 (tri-methyl K36). Marks regions of RNAPII elongation, including coding and non-coding transcripts., TAL1 (also designated SCL) is a serine phosphoprotein and basic helix-loop-helix transcription factor known to regulate embryonic hematopoiesis., This gene encodes the largest subunit of RNA polymerase II, the polymerase responsible for synthesizing messenger RNA in eukaryotes
antibody vendorid
None, 07-449, 07-473, 07-729, ab5408, ab8895, ab8898, ab9050, sc-12984, sc-265, sc-356, sc-9008
antibody vendorname
None, Abcam, Millipore, Santa Cruz Biotech
cell
None, Erythrobl, G1E, G1E-ER4, Megakaryo
cell description
None, Erythroblast, ter119+ cells from liver, Gata1 restored erythroid cells, differentiation induced by estradiol (E2), Gata1- erythroid progenitor, megakaryocyte
cell organism
None, mouse
cell type
None, Early haematopoietic cell line derived from ES cells, fetal liver erythroblast
control
None, Input, None
control description
None, Control signal which may be subtracted from experimental raw signal before peaks are called., No special treatment or protocol applies
controlid
None, wgEncodeEM001916, wgEncodeEM001921, wgEncodeEM002350, wgEncodeEM002352, wgEncodeEM003202, wgEncodeEM003203, wgEncodeEM003204, wgEncodeEM003205, wgEncodeEM003206, wgEncodeEM003207
datatype
None, ChipSeq, RnaSeq
datatype description
None, Chromatin IP Sequencing, Sequencing analysis of RNA expression
genotype
None, RER SCL mutant, wild type
lab description
None, Hardison - Penn State University
labexpid
None, paired-end, single, Timecourse
labversion
None, http://main.g2.bx.psu.edu/u/kanwei/h/12nov2009ln3-ctcf-g1e-er4e2-groomed-canonical
provider
None, Mitch Weiss lab
readtype
None, 1x36, 2x99D
readtype description
None, Paired 99 nt directed reads, Single 36 nt reads
strain description
None, Multipurpose mouse used for safety testing, aging studies, surgical models and pseudopregnancy., Strain 129, has widely available embryonic stem cells
treatment description
None, 14 hours differentiation of G1E-ER4 cells with 10 nM beta-estradiol (Hardison), 24 hours differentiation of G1E-ER4 cells with 10 nM beta-estradiol (Hardison), 3 hours differentiation of G1E-ER4 cells with 10 nM beta-estradiol (Hardison), 30 hours differentiation of G1E-ER4 cells with 10 nM beta-estradiol (Hardison), 7 hours differentiation of G1E-ER4 cells with 10 nM beta-estradiol (Hardison), No special treatment or protocol applies