Dev Arvind, Asch Ruth, Jachimowicz Edward, Rainville Nicole, Johnson Ashley, Greenfest-Allen Emily, Wojchowski Don M
Molecular Medicine Division, Maine Medical Center Research Institute, 81 Research Drive, Scarborough, ME.
Computational Biology and Informatics Laboratory, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA.
Exp Hematol. 2017 May;49:48-55.e5. doi: 10.1016/j.exphem.2016.12.010. Epub 2017 Jan 4.
In response to anemia, the heightened production of erythropoietin (EPO) can sharply promote erythroid progenitor cell (EPC) formation. Specific mediators of such EPO- accelerated erythropoiesis, however, are not well understood. Presently, we first report that the expression of Trib3 in adult bone marrow EPCs in vivo is nominal at steady state, but strongly activated on EPO challenge. In a knockout mouse model, Trib3 disruption modestly increased steady-state erythrocyte numbers and decreased mean corpuscular volume. Following 5-fluorouracil myeloablation, however, rebound red blood cell production and hemoglobin levels were substantially (and selectively) compromised in Trib3 mice versus Trib3 congenic controls. Erythrocytes from 5-fluorouracil-treated Trib3 mice additionally were more prone to lysis and exhibited elevated peroxide-induced reactive oxygen species. Ex vivo, the development of CD71Ter119 erythroblasts from Trib3 bone marrow progenitors was attenuated, and this was associated with heightened EPO-dependent Erk1/2 activation and moderately increased Akt activation. For developmentally staged EPCs, gene profiling provided further initial insight into candidate mediators of EPO-induced Trib3 gene expression, including Cebp-beta, Atf4, Egr-1, and Nab1. Overall, Trib3 is indicated to act as a novel EPC-intrinsic governor of stress erythropoiesis.
针对贫血,促红细胞生成素(EPO)产量的增加可显著促进红系祖细胞(EPC)的形成。然而,这种EPO加速红细胞生成的具体介质尚不清楚。目前,我们首次报道,在体内,成年骨髓EPC中Trib3的表达在稳态时很低,但在EPO刺激下会强烈激活。在基因敲除小鼠模型中,Trib3缺失适度增加了稳态红细胞数量并降低了平均红细胞体积。然而,在5-氟尿嘧啶骨髓消融后,与Trib3同基因对照相比,Trib3小鼠的红细胞生成反弹和血红蛋白水平大幅(且选择性地)受损。5-氟尿嘧啶处理的Trib3小鼠的红细胞更容易裂解,并表现出过氧化氢诱导的活性氧升高。在体外,Trib3骨髓祖细胞中CD71Ter119成红细胞的发育减弱,这与EPO依赖性Erk1/2激活增强和Akt激活适度增加有关。对于发育阶段的EPC,基因谱分析为EPO诱导的Trib3基因表达的候选介质提供了进一步的初步见解,包括Cebp-β、Atf4、Egr-1和Nab1。总体而言,Trib3被认为是应激红细胞生成的一种新型EPC内在调节因子。