The BloodChIP database (http://www.med.unsw.edu.au/CRCWeb.nsf/page/ BloodChIP) supports exploration and visualization of combinatorial transcription factor (TF) binding at a particular locus in human CD34-positive and other normal and leukaemic cells or retrieval of target gene sets for user-defined combinations of TFs across one or more cell types. Increasing numbers of genome-wide TF binding profiles are being added to public repositories, and this trend is likely to continue. For the power of these data sets to be fully harnessed by experimental scientists, there is a need for these data to be placed in context and easily accessible for downstream applications. To this end, we have built a user-friendly database that has at its core the ...
During haematopoiesis, haematopoietic stem cells differentiate into restricted potential progenitors...
Combinatorial transcription factor (TF) interactions control cellular phenotypes and, therefore, und...
<div><p>Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic st...
The BloodChIP database (http://www.med.unsw.edu.au/CRCWeb.nsf/page/ BloodChIP) supports exploration ...
Contains fulltext : 284059.pdf (Publisher’s version ) (Open Access
SummaryCombinatorial transcription factor (TF) interactions control cellular phenotypes and, therefo...
Transcriptional regulation is a crucial process for cell differentiation and development. This proce...
Background: Transcription factors (TFs) often interact with one another to form TF complexes that bi...
The Encyclopedia of DNA Elements (ENCODE) consortium aims to identify all functional elements in the...
Chromatin immunoprecipitation coupled with high-throughput sequencing (ChIP-seq) has become the domi...
Transcription factors play a key role in the development of a disease. ChIP-sequencing has become a ...
The transcriptional regulatory network in prokaryotes controls global gene expression mostly through...
Background Transcription factors (TFs) bind specifically to TF binding sites (TFBSs)...
Integrated analysis of multiple genome-wide transcription factor (TF)-binding profiles will be vital...
International audienceThe large collections of ChIP-seq data rapidly accumulating in public data war...
During haematopoiesis, haematopoietic stem cells differentiate into restricted potential progenitors...
Combinatorial transcription factor (TF) interactions control cellular phenotypes and, therefore, und...
<div><p>Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic st...
The BloodChIP database (http://www.med.unsw.edu.au/CRCWeb.nsf/page/ BloodChIP) supports exploration ...
Contains fulltext : 284059.pdf (Publisher’s version ) (Open Access
SummaryCombinatorial transcription factor (TF) interactions control cellular phenotypes and, therefo...
Transcriptional regulation is a crucial process for cell differentiation and development. This proce...
Background: Transcription factors (TFs) often interact with one another to form TF complexes that bi...
The Encyclopedia of DNA Elements (ENCODE) consortium aims to identify all functional elements in the...
Chromatin immunoprecipitation coupled with high-throughput sequencing (ChIP-seq) has become the domi...
Transcription factors play a key role in the development of a disease. ChIP-sequencing has become a ...
The transcriptional regulatory network in prokaryotes controls global gene expression mostly through...
Background Transcription factors (TFs) bind specifically to TF binding sites (TFBSs)...
Integrated analysis of multiple genome-wide transcription factor (TF)-binding profiles will be vital...
International audienceThe large collections of ChIP-seq data rapidly accumulating in public data war...
During haematopoiesis, haematopoietic stem cells differentiate into restricted potential progenitors...
Combinatorial transcription factor (TF) interactions control cellular phenotypes and, therefore, und...
<div><p>Extrinsic and intrinsic regulators are responsible for the tight control of hematopoietic st...