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PMID: 19686049 已发表 · ppublish 英语

Increased levels of NOTCH1, NF-kappaB, and other interconnected transcription factors characterize primitive sets of hematopoietic stem cells.

Stem cells and development ·第 19 卷 ·第 3 期 ·2010-08-10

Panepucci Rodrigo Alexandre, Oliveira Lucila Habib B, Zanette Dalila Luciola, Viu Carrara Rita de Cassia, Araujo Amélia Goes, Orellana Maristela Delgado, Bonini de Palma Patrícia Vianna, Menezes Camila C B O, Covas Dimas Tadeu, Zago Marco Antonio

摘要

As previously shown, higher levels of NOTCH1 and increased NF-kappaB signaling is a distinctive feature of the more primitive umbilical cord blood (UCB) CD34+ hematopoietic stem cells (HSCs), as compared to bone marrow (BM). Differences between BM and UCB cell composition also account for this finding. The CD133 marker defines a more primitive cell subset among CD34+ HSC with a proposed hemangioblast potential. To further evaluate the molecular basis related to the more primitive characteristics of UCB and CD133+ HSC, immunomagnetically purified human CD34+ and CD133+ cells from BM and UCB were used on gene expression microarrays studies. UCB CD34+ cells contained a significantly higher proportion of CD133+ cells than BM (70% and 40%, respectively). Cluster analysis showed that BM CD133+ cells grouped with the UCB cells (CD133+ and CD34+) rather than to BM CD34+ cells. Compared with CD34+ cells, CD133+ had a higher expression of many transcription factors (TFs). Promoter analysis on all these TF genes revealed a significantly higher frequency (than expected by chance) of NF-kappaB-binding sites (BS), including potentially novel NF-kappaB targets such as RUNX1, GATA3, and USF1. Selected transcripts of TF related to primitive hematopoiesis and self-renewal, such as RUNX1, GATA3, USF1, TAL1, HOXA9, HOXB4, NOTCH1, RELB, and NFKB2 were evaluated by real-time PCR and were all significantly positively correlated. Taken together, our data indicate the existence of an interconnected transcriptional network characterized by higher levels of NOTCH1, NF-kappaB, and other important TFs on more primitive HSC sets.

文献信息
期刊
Stem cells and development
期刊简称
Stem Cells Dev
发表日期
2010-08-10
收录日期
2010-03-16
更新日期
2016-11-25
语言
英语
国家/地区
United States
NLM ID
101197107
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