Defining B cell chromatin: lessons from EBF1

S Boller, R Li, R Grosschedl - Trends in Genetics, 2018 - cell.com
Hematopoiesis is regulated by signals from the microenvironment, transcription factor
networks, and changes of the epigenetic landscape. Transcription factors interact with and …

[PDF][PDF] Defining B Cell Chromatin: Lessons from EBF1

S Boller, R Li, R Grosschedl - Trends in Genetics, 2018 - academia.edu
Hematopoiesis is regulated by signals from the microenvironment, transcription factor
networks, and changes of the epigenetic landscape. Transcription factors interact with and …

Defining B Cell Chromatin: Lessons from EBF1

S Boller, R Li, R Grosschedl - Trends in genetics: TIG, 2018 - pubmed.ncbi.nlm.nih.gov
Hematopoiesis is regulated by signals from the microenvironment, transcription factor
networks, and changes of the epigenetic landscape. Transcription factors interact with and …

Defining B Cell Chromatin: Lessons from EBF1

S Boller, R Li, R Grosschedl - Trends in Genetics, 2018 - Elsevier
HighlightsB cell differentiation is regulated by an interplay of cell-extrinsic signals with
transcription factors that integrate these signals and/or induce changes in gene expression …

Defining B Cell Chromatin: Lessons from EBF1

S Boller, R Li, R Grosschedl - Trends in Genetics, 2018 - pure.mpg.de
Hematopoiesis is regulated by signals from the microenvironment, transcription factor
networks, and changes of the epigenetic landscape. Transcription factors interact with and …

Defining B Cell Chromatin: Lessons from EBF1.

S Boller, R Li, R Grosschedl - Trends in Genetics: TIG, 2018 - europepmc.org
Hematopoiesis is regulated by signals from the microenvironment, transcription factor
networks, and changes of the epigenetic landscape. Transcription factors interact with and …

[引用][C] Defining B Cell Chromatin: Lessons from EBF1

S Boller, R Li, R Grosschedl - Trends in Genetics, 2018 - cir.nii.ac.jp