Author:
Bhattacharya Bhaskar,Cai Jingli,Luo Youngquan,Miura Takumi,Mejido Josef,Brimble Sandii N,Zeng Xianmin,Schulz Thomas C,Rao Mahendra S,Puri Raj K
Abstract
Abstract
Background
The identification of molecular pathways of differentiation of embryonic stem cells (hESC) is critical for the development of stem cell based medical therapies. In order to identify biomarkers and potential regulators of the process of differentiation, a high quality microarray containing 16,659 seventy base pair oligonucleotides was used to compare gene expression profiles of undifferentiated hESC lines and differentiating embryoid bodies.
Results
Previously identified "stemness" genes in undifferentiated hESC lines showed down modulation in differentiated cells while expression of several genes was induced as cells differentiated. In addition, a subset of 194 genes showed overexpression of greater than ≥ 3 folds in human embryoid bodies (hEB). These included 37 novel and 157 known genes. Gene expression was validated by a variety of techniques including another large scale array, reverse transcription polymerase chain reaction, focused cDNA microarrays, massively parallel signature sequencing (MPSS) analysis and immunocytochemisty. Several novel hEB specific expressed sequence tags (ESTs) were mapped to the human genome database and their expression profile characterized. A hierarchical clustering analysis clearly depicted a distinct difference in gene expression profile among undifferentiated and differentiated hESC and confirmed that microarray analysis could readily distinguish them.
Conclusion
These results present a detailed characterization of a unique set of genes, which can be used to assess the hESC differentiation.
Publisher
Springer Science and Business Media LLC
Cited by
97 articles.
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