Mol. Cells 2006; 21(3): 343-355
Published online January 1, 1970
© The Korean Society for Molecular and Cellular Biology
Stem cells are unique cell populations with the ability to undergo both self-renewal and differentiation, although a wide variety of adult stem cells as well as embryonic stem cells have been identified and stem cell plasticity has recently been reported. To identify genes implicated in the control of the stem cell state as well as the characteristics of each stem cell line, we analyzed the expression profiles of genes in human embryonic, hematopoietic (CD34+ and CD133+), and mesenchymal stem cells using cDNA microarrays, and identified genes that were differentially expressed in specific stem cell populations. In particular we were able to identify potential hESC signature-like genes that encode transcription factors (TFAP2C and MYCN), an RNA binding protein (IMP-3), and a functionally uncharacterized protein (MAGEA4). The overlapping sets of 22 up-regulated and 141 down-regulated genes identified in this study of three human stem cell types may also provide insight into the developmental mechanisms common to all human stem cells. Furthermore, our comprehensive analyses of gene expression profiles in various adult stem cells may help to identify the genetic pathways involved in self-renewal as well as in multi-lineage specific differentiation.
Keywords cDNA Microarray; Expression Profiling; Human CD34+ Hematopoietic Stem/Progenitor Cells; Human CD133+ Hematopoietic Stem/Progenitor Cells; Human Embryonic Stem Cells; Human Mesenchymal Stem Cells;
Mol. Cells 2006; 21(3): 343-355
Published online June 30, 2006
Copyright © The Korean Society for Molecular and Cellular Biology.
Chul Geun Kim, Jong Joo Lee, Dae Young Jung, Jinseon Jeon, Hyen Seok Heo, Ho Chul Kang, June Ho Shin, Yoon Shin Cho, Kyung Joon Cha, Chan Gil Kim, Byung-Rok Do, Kyung Suk Kim, Hyun-Soo Kim
Stem cells are unique cell populations with the ability to undergo both self-renewal and differentiation, although a wide variety of adult stem cells as well as embryonic stem cells have been identified and stem cell plasticity has recently been reported. To identify genes implicated in the control of the stem cell state as well as the characteristics of each stem cell line, we analyzed the expression profiles of genes in human embryonic, hematopoietic (CD34+ and CD133+), and mesenchymal stem cells using cDNA microarrays, and identified genes that were differentially expressed in specific stem cell populations. In particular we were able to identify potential hESC signature-like genes that encode transcription factors (TFAP2C and MYCN), an RNA binding protein (IMP-3), and a functionally uncharacterized protein (MAGEA4). The overlapping sets of 22 up-regulated and 141 down-regulated genes identified in this study of three human stem cell types may also provide insight into the developmental mechanisms common to all human stem cells. Furthermore, our comprehensive analyses of gene expression profiles in various adult stem cells may help to identify the genetic pathways involved in self-renewal as well as in multi-lineage specific differentiation.
Keywords: cDNA Microarray, Expression Profiling, Human CD34+ Hematopoietic Stem/Progenitor Cells, Human CD133+ Hematopoietic Stem/Progenitor Cells, Human Embryonic Stem Cells, Human Mesenchymal Stem Cells,