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本文引用的文献

1
Quantitation of murine and human hematopoietic stem cells by limiting-dilution analysis in competitively repopulated hosts.通过在竞争性再填充宿主中进行有限稀释分析对小鼠和人类造血干细胞进行定量。
Methods Mol Med. 2002;63:167-87. doi: 10.1385/1-59259-140-X:167.
2
Long-term propagation of distinct hematopoietic differentiation programs in vivo.体内不同造血分化程序的长期增殖
Cell Stem Cell. 2007 Aug 16;1(2):218-29. doi: 10.1016/j.stem.2007.05.015.
3
Steel factor responsiveness regulates the high self-renewal phenotype of fetal hematopoietic stem cells.Steel因子反应性调节胎儿造血干细胞的高自我更新表型。
Blood. 2007 Jun 1;109(11):5043-8. doi: 10.1182/blood-2006-08-037770. Epub 2007 Feb 27.
4
Lnk negatively regulates self-renewal of hematopoietic stem cells by modifying thrombopoietin-mediated signal transduction.Lnk通过修饰血小板生成素介导的信号转导负向调节造血干细胞的自我更新。
Proc Natl Acad Sci U S A. 2007 Feb 13;104(7):2349-54. doi: 10.1073/pnas.0606238104. Epub 2007 Feb 6.
5
Hematopoietic stem cells proliferate until after birth and show a reversible phase-specific engraftment defect.造血干细胞在出生前持续增殖,并表现出可逆的阶段特异性植入缺陷。
J Clin Invest. 2006 Oct;116(10):2808-16. doi: 10.1172/JCI28310.
6
High-resolution video monitoring of hematopoietic stem cells cultured in single-cell arrays identifies new features of self-renewal.对单细胞阵列中培养的造血干细胞进行高分辨率视频监测,发现了自我更新的新特征。
Proc Natl Acad Sci U S A. 2006 May 23;103(21):8185-90. doi: 10.1073/pnas.0602548103. Epub 2006 May 15.
7
Unique effects of Stat3 on the early phase of hematopoietic stem cell regeneration.信号转导与转录激活因子3(Stat3)对造血干细胞再生早期阶段的独特作用。
Blood. 2006 Aug 15;108(4):1208-15. doi: 10.1182/blood-2006-01-010199. Epub 2006 Apr 13.
8
Pten dependence distinguishes haematopoietic stem cells from leukaemia-initiating cells.PTEN依赖性将造血干细胞与白血病起始细胞区分开来。
Nature. 2006 May 25;441(7092):475-82. doi: 10.1038/nature04703. Epub 2006 Apr 5.
9
Endothelial protein C receptor (CD201) explicitly identifies hematopoietic stem cells in murine bone marrow.内皮细胞蛋白C受体(CD201)可明确识别小鼠骨髓中的造血干细胞。
Blood. 2006 Mar 15;107(6):2317-21. doi: 10.1182/blood-2005-06-2249. Epub 2005 Nov 22.
10
The Polycomb group gene Ezh2 prevents hematopoietic stem cell exhaustion.多梳蛋白家族基因Ezh2可防止造血干细胞耗竭。
Blood. 2006 Mar 1;107(5):2170-9. doi: 10.1182/blood-2005-09-3585. Epub 2005 Nov 17.

Steel因子协同调节造血干细胞的分子特征和生物学功能。

Steel factor coordinately regulates the molecular signature and biologic function of hematopoietic stem cells.

作者信息

Kent David G, Dykstra Brad J, Cheyne Jay, Ma Elaine, Eaves Connie J

机构信息

Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, BC, Canada.

出版信息

Blood. 2008 Aug 1;112(3):560-7. doi: 10.1182/blood-2007-10-117820. Epub 2008 May 23.

DOI:10.1182/blood-2007-10-117820
PMID:18502833
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2481530/
Abstract

Hematopoietic stem cells (HSCs) regenerated in vivo display sustained differences in their self-renewal and differentiation activities. Variations in Steel factor (SF) signaling are known to affect these functions in vitro, but the cellular and molecular mechanisms involved are not understood. To address these issues, we evaluated highly purified HSCs maintained in single-cell serum-free cultures containing 20 ng/mL IL-11 plus 1, 10, or 300 ng/mL SF. Under all conditions, more than 99% of the cells traversed a first cell cycle with similar kinetics. After 8 hours in the 10 or 300 ng/mL SF conditions, the frequency of HSCs remained unchanged. However, in the next 8 hours (ie, 6 hours before any cell divided), HSC integrity was sustained only in the 300 ng/mL SF cultures. The cells in these cultures also contained significantly higher levels of Bmi1, Lnk, and Ezh2 transcripts but not of several other regulators. Assessment of 21 first division progeny pairs further showed that only those generated in 300 ng/mL SF cultures contained HSCs and pairs of progeny with similar differentiation programs were not observed. Thus, SF signaling intensity can directly and coordinately alter the transcription factor profile and long-term repopulating ability of quiescent HSCs before their first division.

摘要

体内再生的造血干细胞(HSC)在自我更新和分化活性方面表现出持续的差异。已知Steel因子(SF)信号的变化会在体外影响这些功能,但其中涉及的细胞和分子机制尚不清楚。为了解决这些问题,我们评估了在含有20 ng/mL白细胞介素-11加1、10或300 ng/mL SF的单细胞无血清培养物中维持的高度纯化的HSC。在所有条件下,超过99%的细胞以相似的动力学经历了第一个细胞周期。在10或300 ng/mL SF条件下培养8小时后,HSC的频率保持不变。然而,在接下来的8小时内(即任何细胞分裂前6小时),只有在300 ng/mL SF培养物中HSC的完整性得以维持。这些培养物中的细胞还含有显著更高水平的Bmi1、Lnk和Ezh2转录本,但其他几种调节因子的转录本水平则没有升高。对21对首次分裂后代的评估进一步表明,只有在300 ng/mL SF培养物中产生的后代含有HSC,并且未观察到具有相似分化程序的后代对。因此,SF信号强度可以在静止HSC首次分裂之前直接并协同改变其转录因子谱和长期重建能力。