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绝地——一种在早期造血细胞中表达的新型跨膜蛋白。

Jedi--a novel transmembrane protein expressed in early hematopoietic cells.

作者信息

Krivtsov Andrei V, Rozov Fedor N, Zinovyeva Marina V, Hendrikx P Jan, Jiang Yajuan, Visser Jan W M, Belyavsky Alexander V

机构信息

Lindsley F. Kimball Research Institute, New York Blood Center, 310 East 67 Street, New York, NY 10021, USA.

出版信息

J Cell Biochem. 2007 Jun 1;101(3):767-84. doi: 10.1002/jcb.21232.

Abstract

Self-renewal and differentiation of hematopoietic stem and progenitor cells are defined by the ensembles of genes expressed by these cells. Here we report identification of a novel gene named Jedi, which is expressed predominantly in short- and long-term repopulating stem cells when compared to more mature bone marrow progenitors. Jedi mRNA encodes a transmembrane protein that contains multiple EGF-like repeats. Jedi and two earlier reported proteins, MEGF10 and MEGF11, share a substantial homology and are likely to represent a novel protein family. Studies of the potential role of Jedi in hematopoietic regulation demonstrated that the retrovirally mediated expression of Jedi in bone marrow cells decreased the number of myeloid progenitors in in vitro clonogenic assays. In addition, expression of Jedi in NIH 3T3 fibroblasts resulted in a decreased number of late and early myeloid progenitors in the non-adherent co-cultured bone marrow cells. Jedi shares a number of structural features with the Jagged/Serrate/Delta family of Notch ligands, and our experiments indicate that the extracellular domain of Jedi, similar to the corresponding domain of Jagged1, inhibits Notch signaling. On the basis of obtained results, we suggest that Jedi is involved in the fine regulation of the early stages of hematopoietic differentiation, presumably through the Notch signaling pathway.

摘要

造血干细胞和祖细胞的自我更新与分化是由这些细胞所表达的基因组合来定义的。在此,我们报告鉴定出一个名为Jedi的新基因,与更成熟的骨髓祖细胞相比,它主要在短期和长期再填充干细胞中表达。Jedi信使核糖核酸编码一种含有多个表皮生长因子样重复序列的跨膜蛋白。Jedi与两个先前报道的蛋白MEGF10和MEGF11具有显著的同源性,可能代表一个新的蛋白家族。对Jedi在造血调控中潜在作用的研究表明,逆转录病毒介导的Jedi在骨髓细胞中的表达在体外克隆形成试验中减少了髓系祖细胞的数量。此外,Jedi在NIH 3T3成纤维细胞中的表达导致非贴壁共培养骨髓细胞中晚期和早期髓系祖细胞数量减少。Jedi与Notch配体的锯齿状/锯齿形/三角洲家族具有许多结构特征,我们的实验表明,Jedi的细胞外结构域与Jagged1的相应结构域相似,可抑制Notch信号传导。基于所获得的结果,我们认为Jedi可能通过Notch信号通路参与造血分化早期阶段的精细调控。

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