期刊论文详细信息
Developmental biology
The Hox cofactors Meis1 and Pbx act upstream of gata1 to regulate primitive hematopoiesis
Laura M.Pillay1 
关键词: Pbx;    Meis;    Meis1;    Gata1;    Hematopoiesis;    Zebrafish;    Hox;    Hoxb7a;    Cdx;    Lmo2;    Hemoglobin;    Scl;    Erythropoiesis;    Erythroid;    Myeloid;    Myelopoiesis;    Pu.1;    Spi1;   
DOI  :  10.1016/j.ydbio.2010.01.033
学科分类:生物科学(综合)
来源: Academic Press
PDF
【 摘 要 】

During vertebrate development, the initial wave of hematopoiesis produces cells that help to shape the developing circulatory system and oxygenate the early embryo. The differentiation of primitive erythroid and myeloid cells occurs within a short transitory period, and is subject to precise molecular regulation by a hierarchical cascade of transcription factors. The TALE-class homeodomain transcription factors Meis and Pbx function to regulate embryonic hematopoiesis, but it is not known where Meis and Pbx proteins participate in the hematopoietic transcription factor cascade. To address these questions, we have ablated Meis1 and Pbx proteins in zebrafish, and characterized their molecular effects on known markers of primitive hematopoiesis. Embryos lacking Meis1 and Pbx exhibit a severe reduction in the expression of gata1, the earliest marker of erythroid cell fate, and fail to produce visible circulating blood cells. Concomitant with a loss of gata1, Meis1- and Pbx-depleted embryos exhibit downregulated embryonic hemoglobin (hbae3) expression, and possess increased numbers of pu.1-positive myeloid cells. gata1-overexpression rescues hbae3 expression in Pbx-depleted; meis1-morphant embryos, placing Pbx and Meis1 upstream of gata1 in the erythropoietic transcription factor hierarchy. Our study conclusively demonstrates that Meis1 and Pbx act to specify the erythropoietic cell lineage and inhibit myelopoiesis.

【 授权许可】

CC BY   

【 预 览 】
附件列表
Files Size Format View
RO201902194186559ZK.pdf 1743KB PDF download
  文献评价指标  
  下载次数:14次 浏览次数:8次