OBJECTIVE: The aim of the present study has been to establish serum-free culture conditions for ex vivo expansion and differentiation of human CD34(+) cells into erythroid lineage and to study the chromatin structure, gene expression, and transcription factor recruitment at the alpha-globin locus in the developing erythron. MATERIALS AND METHODS: A basal Iscove\u27s modified Dulbecco\u27s medium cell culture medium with 1% bovine serum albumin as a serum replacement and a combination of cytokines and growth factors was used for expansion and differentiation of the CD34(+) cells. Expression patterns of the alpha- and beta-like genes at various stages of erythropoiesis was studied by reverse transcriptase quantitative polymerase chain reactio...
Interplays among lineage-specific nuclear proteins, chromatin modifying enzymes, and the basal trans...
Hematopoiesis is a convenient model to study how chromatin dynamics plays a decisive role in regulat...
GATA-1 Is a central transcription-activator of erythroid differentiation. In the present work we hav...
Fetal stem cells isolated from umbilical cord blood (UCB) possess a great capacity for proliferation...
With the objective to correlate clonogenicity, gene expression and phenotype during differentiation,...
Abstract Background The fetal and adult globin genes in the human β-globin cluster on chromosome 11 ...
In the post-genomic era, a great deal of work has focused on understanding how DNA sequence is used ...
The overall aim of this work is to understand how regulatory sequences (enhancers, promoters) are bo...
A complete understanding of human erythropoiesis will require a robust description of transcriptiona...
Cis-regulatory elements can control gene transcription over large distances. Studying the associatio...
In vitro suspension culture procedures for erythroid progenitor cells make it possible for us to obt...
How does an emerging transcriptional programme regulate individual genes as stem cells undergo linea...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
SummaryErythroid cell commitment and differentiation proceed through activation of a lineage-restric...
The aim of this study was to investigate changes in primitive hematopoietic cells through CD38 expre...
Interplays among lineage-specific nuclear proteins, chromatin modifying enzymes, and the basal trans...
Hematopoiesis is a convenient model to study how chromatin dynamics plays a decisive role in regulat...
GATA-1 Is a central transcription-activator of erythroid differentiation. In the present work we hav...
Fetal stem cells isolated from umbilical cord blood (UCB) possess a great capacity for proliferation...
With the objective to correlate clonogenicity, gene expression and phenotype during differentiation,...
Abstract Background The fetal and adult globin genes in the human β-globin cluster on chromosome 11 ...
In the post-genomic era, a great deal of work has focused on understanding how DNA sequence is used ...
The overall aim of this work is to understand how regulatory sequences (enhancers, promoters) are bo...
A complete understanding of human erythropoiesis will require a robust description of transcriptiona...
Cis-regulatory elements can control gene transcription over large distances. Studying the associatio...
In vitro suspension culture procedures for erythroid progenitor cells make it possible for us to obt...
How does an emerging transcriptional programme regulate individual genes as stem cells undergo linea...
Erythroid cell commitment and differentiation proceed through activation of a lineage-restricted tra...
SummaryErythroid cell commitment and differentiation proceed through activation of a lineage-restric...
The aim of this study was to investigate changes in primitive hematopoietic cells through CD38 expre...
Interplays among lineage-specific nuclear proteins, chromatin modifying enzymes, and the basal trans...
Hematopoiesis is a convenient model to study how chromatin dynamics plays a decisive role in regulat...
GATA-1 Is a central transcription-activator of erythroid differentiation. In the present work we hav...