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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >From stem cell to red cell: regulation of erythropoiesis at multiple levels by multiple proteins, RNAs, and chromatin modifications.
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From stem cell to red cell: regulation of erythropoiesis at multiple levels by multiple proteins, RNAs, and chromatin modifications.

机译:从干细胞到红细胞:通过多种蛋白质,RNA和染色质修饰在多个水平上调节红细胞生成。

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摘要

This article reviews the regulation of production of RBCs at several levels. We focus on the regulated expansion of burst-forming unit-erythroid erythroid progenitors by glucocorticoids and other factors that occur during chronic anemia, inflammation, and other conditions of stress. We also highlight the rapid production of RBCs by the coordinated regulation of terminal proliferation and differentiation of committed erythroid colony-forming unit-erythroid progenitors by external signals, such as erythropoietin and adhesion to a fibronectin matrix. We discuss the complex intracellular networks of coordinated gene regulation by transcription factors, chromatin modifiers, and miRNAs that regulate the different stages of erythropoiesis.
机译:本文从多个层面回顾了红细胞的生产监管。我们专注于糖皮质激素和在慢性贫血,炎症和其他压力条件下发生的其他因素对爆发形成单位红系红系祖细胞的调控扩张。我们还强调了通过外部信号(如促红细胞生成素和对纤连蛋白基质的粘附)对端粒红细胞集落形成单位-红细胞祖细胞的终末增殖和分化的协调调节来快速生产RBC。我们讨论由转录因子,染色质修饰剂和调节红细胞生成不同阶段的miRNA协调基因调控的复杂细胞内网络。

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