Combining transcriptional profiling and genetic linkage analysis to uncover gene networks operating in hematopoietic stem cells and their progeny
Open Access
- 17 June 2008
- journal article
- review article
- Published by Springer Nature in Immunogenetics
- Vol. 60 (8) , 411-422
- https://doi.org/10.1007/s00251-008-0305-3
Abstract
Stem cells are unique in that they possess both the capacity to self-renew and thereby maintain their original pool as well as the capacity to differentiate into mature cells. In the past number of years, transcriptional profiling of enriched stem cell populations has been extensively performed in an attempt to identify a universal stem cell gene expression signature. While stem-cell-specific transcripts were identified in each case, this approach has thus far been insufficient to identify a universal group of core “stemness” genes ultimately responsible for self-renewal and multipotency. Similarly, in the hematopoietic system, comparisons of transcriptional profiles between different hematopoietic cell stages have had limited success in revealing core genes ultimately responsible for the initiation of differentiation and lineage specification. Here, we propose that the combined use of transcriptional profiling and genetic linkage analysis, an approach called “genetical genomics”, can be a valuable tool to assist in the identification of genes and gene networks that specify “stemness” and cell fate decisions. We review past studies of hematopoietic cells that utilized transcriptional profiling and/or genetic linkage analysis, and discuss several potential future applications of genetical genomics.Keywords
This publication has 69 references indexed in Scilit:
- Direct Reprogramming of Terminally Differentiated Mature B Lymphocytes to PluripotencyCell, 2008
- Hematopoietic Fingerprints: An Expression Database of Stem Cells and Their ProgenyCell Stem Cell, 2007
- Induction of Pluripotent Stem Cells from Adult Human Fibroblasts by Defined FactorsCell, 2007
- Discovery of expression QTLs using large-scale transcriptional profiling in human lymphocytesNature Genetics, 2007
- Induction of Pluripotent Stem Cells from Mouse Embryonic and Adult Fibroblast Cultures by Defined FactorsCell, 2006
- Polycomb complexes repress developmental regulators in murine embryonic stem cellsNature, 2006
- A Bivalent Chromatin Structure Marks Key Developmental Genes in Embryonic Stem CellsCell, 2006
- An integrative genomics approach to infer causal associations between gene expression and diseaseNature Genetics, 2005
- Genetic analysis of genome-wide variation in human gene expressionNature, 2004
- Trans-acting regulatory variation in Saccharomyces cerevisiae and the role of transcription factorsNature Genetics, 2003