Transcriptional profiling of hematopoietic stem cells by high-throughput sequencing

被引:0
作者
Yoshimi Yashiro
Hideo Bannai
Takashi Minowa
Tomohide Yabiku
Satoru Miyano
Mitsujiro Osawa
Atsushi Iwama
Hiromitsu Nakauchi
机构
[1] University of Tokyo,Division of Stem Cell Therapy, Center for Stem Cell and Regenerative Medicine, The Institute of Medical Science
[2] University of Tokyo,Laboratory of DNA Information Analysis, Human Genome Center, The Institute of Medical Science
[3] Chiba University,Department of Cellular and Molecular Medicine, Graduate School of Medicine
[4] Kyushu University,Department of Informatics
[5] Ryukyu University,Interdisciplinary Intelligent Systems Engineering Course, Graduate School of Engineering and Science
[6] Hitachi,Nanotechnology Innovation Center
[7] Ltd,Department of Developmental Biology
[8] Life Science Group,Laboratory of Stem Cell Therapy, Center for Experimental Medicine, The Institute of Medical Science
[9] National Institute for Materials Science,undefined
[10] University of Texas Southwestern Medical Center,undefined
[11] University of Tokyo,undefined
来源
International Journal of Hematology | 2009年 / 89卷
关键词
Hematopoietic stem cells; High-throughput sequencing; Non-coding RNA;
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学科分类号
摘要
Microarray analysis has made it feasible to carry out extensive gene expression profiling in a single assay. Various hematopoietic stem cell (HSC) populations have been subjected to microarray analyses and their profiles of gene expression have been reported. However, this approach is not suitable to identify novel transcripts or for profiling of genes with low expression levels. To obtain a detailed gene expression profile of CD34−c-Kit+Sca-1+lineage marker-negative (Lin−) (CD34−KSL) HSCs, we constructed a CD34−KSL cDNA library, performed high-throughput sequencing, and compared the generated profile with that of another HSC fraction, side population (SP) Lin− (SP Lin−) cells. Sequencing of the 5′-termini of about 9,500 cDNAs from each HSC library identified 1,424 and 2,078 different genes from the CD34−KSL and SP Lin− libraries, respectively. To exclude ubiquitously expressed genes including housekeeping genes, digital subtraction was successfully performed against EST databases of other organs, leaving 25 HSC-specific genes including five novel genes. Among 4,450 transcripts from the CD34−KSL cDNA library that showed no homology to the presumable protein-coding genes, 29 were identified as strong candidates for mRNA-like non-coding RNAs by in silico analyses. Our cyclopedic approaches may contribute to understanding of novel molecular aspects of HSC function.
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页码:24 / 33
页数:9
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共 327 条
[1]  
Osawa M(1996)Long-term lymphohematopoietic reconstitution by a single CD34-low/negative hematopoietic stem cell Science 273 242-5
[2]  
Hanada K(1996)Isolation and functional properties of murine hematopoietic stem cells that are replicating in vivo J Exp Med 183 1797-806
[3]  
Hamada H(2001)The ABC transporter Bcrp1/ABCG2 is expressed in a wide variety of stem cells and is a molecular determinant of the side-population phenotype Nat Med 7 1028-34
[4]  
Nakauchi H(1985)Multiparameter analysis of transplantable hemopoietic stem cells: I. The separation and enrichment of stem cells homing to marrow and spleen on the basis of rhodamine-123 fluorescence Exp Hematol 13 999-1006
[5]  
Goodell MA(1988)Purification and characterization of mouse hematopoietic stem cells Science 241 58-62
[6]  
Brose K(1992)Searching for hematopoietic stem cells: evidence that Thy-1.1lo Lin- Sca-1+ cells are the only stem cells in C57BL/Ka-Thy-1.1 bone marrow J Exp Med 175 175-84
[7]  
Paradis G(1995)Long-term repopulating abilities of enriched fetal liver stem cells measured by competitive repopulation Exp Hematol 23 1011-5
[8]  
Conner AS(2001)From hematopoiesis to neuropoiesis: evidence of overlapping genetic programs Proc Natl Acad Sci USA 98 7934-9
[9]  
Mulligan RC(2002)Differential gene expression profiling of adult murine hematopoietic stem cells Blood 99 488-98
[10]  
Zhou S(2004)Molecular signatures of proliferation and quiescence in hematopoietic stem cells PLoS Biol 2 e301-40