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本文引用的文献

1
A novel tumour-suppressor function for the Notch pathway in myeloid leukaemia.Notch 通路在髓性白血病中具有新颖的肿瘤抑制功能。
Nature. 2011 May 12;473(7346):230-3. doi: 10.1038/nature09999.
2
Transcription intermediary factor 1γ is a tumor suppressor in mouse and human chronic myelomonocytic leukemia.转录中介因子 1γ 在人和鼠慢性粒单核细胞白血病中作为肿瘤抑制因子。
J Clin Invest. 2011 Jun;121(6):2361-70. doi: 10.1172/JCI45213. Epub 2011 May 2.
3
Adult hematopoiesis is regulated by TIF1γ, a repressor of TAL1 and PU.1 transcriptional activity.成人造血由 TIF1γ 调节,TIF1γ 是 TAL1 和 PU.1 转录活性的抑制剂。
Cell Stem Cell. 2011 Apr 8;8(4):412-25. doi: 10.1016/j.stem.2011.02.005.
4
Stress erythropoiesis: new signals and new stress progenitor cells.应激性红细胞生成:新信号和新应激祖细胞。
Curr Opin Hematol. 2011 May;18(3):139-45. doi: 10.1097/MOH.0b013e32834521c8.
5
TIF1gamma controls erythroid cell fate by regulating transcription elongation.TIF1γ 通过调控转录延伸控制红细胞命运。
Cell. 2010 Jul 9;142(1):133-43. doi: 10.1016/j.cell.2010.05.028.
6
Nuclear CDKs drive Smad transcriptional activation and turnover in BMP and TGF-beta pathways.细胞核周期蛋白依赖性激酶驱动骨形态发生蛋白(BMP)和转化生长因子-β(TGF-β)信号通路中的Smad转录激活和周转。
Cell. 2009 Nov 13;139(4):757-69. doi: 10.1016/j.cell.2009.09.035.
7
Juvenile myelomonocytic leukemia and chronic myelomonocytic leukemia.青少年型骨髓单核细胞白血病和慢性骨髓单核细胞白血病。
Leukemia. 2008 Jul;22(7):1335-42. doi: 10.1038/leu.2008.162. Epub 2008 Jun 12.
8
Generation of mice with a conditional allele for Trim33.生成带有Trim33条件等位基因的小鼠。
Genesis. 2008 Jun;46(6):329-33. doi: 10.1002/dvg.20401.
9
BMP4/Smad5 dependent stress erythropoiesis is required for the expansion of erythroid progenitors during fetal development.在胎儿发育过程中,红细胞祖细胞的扩增需要BMP4/Smad5依赖性应激性红细胞生成。
Dev Biol. 2008 May 1;317(1):24-35. doi: 10.1016/j.ydbio.2008.01.047. Epub 2008 Feb 15.
10
Hematopoiesis: an evolving paradigm for stem cell biology.造血作用:干细胞生物学的一个不断发展的范式。
Cell. 2008 Feb 22;132(4):631-44. doi: 10.1016/j.cell.2008.01.025.

TiF1-γ 在小鼠造血中发挥重要作用,并调节红细胞基因的转录延伸。

TiF1-gamma plays an essential role in murine hematopoiesis and regulates transcriptional elongation of erythroid genes.

机构信息

Stem Cell Program, Children's Hospital Boston, Boston, MA 02115, USA.

出版信息

Dev Biol. 2013 Jan 15;373(2):422-30. doi: 10.1016/j.ydbio.2012.10.008. Epub 2012 Nov 16.

DOI:10.1016/j.ydbio.2012.10.008
PMID:23159334
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3540997/
Abstract

Transcriptional regulators play critical roles in the regulation of cell fate during hematopoiesis. Previous studies in zebrafish have identified an essential role for the transcriptional intermediary factor TIF1γ in erythropoiesis by regulating the transcription elongation of erythroid genes. To study if TIF1γ plays a similar role in murine erythropoiesis and to assess its function in other blood lineages, we generated mouse models with hematopoietic deletion of TIF1γ. Our results showed a block in erythroid maturation in the bone marrow following tif1γ deletion that was compensated with enhanced spleen erythropoiesis. Further analyses revealed a defect in transcription elongation of erythroid genes in the bone marrow. In addition, loss of TIF1γ resulted in defects in other blood compartments, including a profound loss of B cells, a dramatic expansion of granulocytes and decreased HSC function. TIF1γ exerts its functions in a cell-autonomous manner as revealed by competitive transplantation experiments. Our study therefore demonstrates that TIF1γ plays essential roles in multiple murine blood lineages and that its function in transcription elongation is evolutionally conserved.

摘要

转录调节因子在造血过程中细胞命运的调控中发挥着关键作用。斑马鱼的先前研究表明,转录中介因子 TIF1γ 通过调节红细胞基因的转录延伸,在红细胞生成中发挥着重要作用。为了研究 TIF1γ 是否在小鼠红细胞生成中发挥类似作用,并评估其在其他血液谱系中的功能,我们生成了 TIF1γ 造血缺失的小鼠模型。我们的结果表明,在 tif1γ 缺失后,骨髓中的红细胞成熟被阻断,而脾脏中的红细胞生成得到增强。进一步的分析显示,在骨髓中红细胞基因的转录延伸存在缺陷。此外,TIF1γ 的缺失导致其他血液区室出现缺陷,包括 B 细胞的严重缺失、粒细胞的显著扩张和 HSC 功能的降低。竞争移植实验表明,TIF1γ 以细胞自主的方式发挥作用。因此,我们的研究表明,TIF1γ 在多种小鼠血液谱系中发挥着重要作用,其在转录延伸中的功能在进化上是保守的。