Molecular and Clinical Hematology Branch, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Blood. 2013 Apr 18;121(16):3216-27. doi: 10.1182/blood-2011-10-385252. Epub 2013 Jan 17.
Human erythropoiesis is a dynamic and complex multistep process involving differentiation of early erythroid progenitors into enucleated RBCs. The mechanisms underlying erythropoiesis still remain incompletely understood. We previously demonstrated that erythropoietin-stimulated clone-1, which is selectively expressed in normal human erythroid-lineage cells, shares 99.5% identity with malignant fibrous histiocytoma-amplified sequences with leucine-rich tandem repeats 1 (MASL1). In this study, we hypothesized that the MASL1 gene plays a role in erythroid differentiation, and used a human erythroid cell culture system to explore this concept. MASL1 mRNA and protein expression levels were significantly increased during the erythroid differentiation of CD34(+) cells following erythropoietin (EPO) treatment. Conversely, MASL1 knockdown reduced erythroid differentiation in EPO-treated CD34(+) cells. In addition, MASL1 knockdown interrupted the Raf/MEK/ERK signaling pathway in CD34(+) cells. MASL1 mutant-transfected CD34(+) cells also showed decreased erythroid differentiation. Furthermore, inhibition of the SH3 domain of Son of Sevenless, which is an upstream adapter protein in EPO-induced erythroid differentiation, also reduced MASL1 expression and phosphorylation of Raf/MEK/ERK kinases that consequently reduced erythroid differentiation of EPO-induced CD34(+) cells. Importantly, we also demonstrated that MASL1 interacts physically with Raf1. Taken together, our data provide novel insights into MASL1 regulation of erythropoiesis through the Raf/MEK/ERK pathway.
人类红细胞生成是一个动态而复杂的多步骤过程,涉及早期红系祖细胞向无核 RBC 的分化。红细胞生成的机制仍不完全清楚。我们之前证明,红细胞生成素刺激的克隆-1,选择性地在正常人类红系细胞中表达,与富含亮氨酸串联重复序列 1(MASL1)的恶性纤维组织细胞瘤扩增序列有 99.5%的同一性。在这项研究中,我们假设 MASL1 基因在红细胞分化中起作用,并使用人类红细胞培养系统来探索这一概念。在红细胞生成素(EPO)处理后,CD34+细胞的红细胞分化过程中,MASL1 mRNA 和蛋白表达水平显著增加。相反,MASL1 敲低减少了 EPO 处理的 CD34+细胞中的红细胞分化。此外,MASL1 敲低中断了 CD34+细胞中的 Raf/MEK/ERK 信号通路。MASL1 突变体转染的 CD34+细胞也表现出红细胞分化减少。此外,抑制 EPO 诱导的红细胞分化中上游衔接蛋白 Son of Sevenless 的 SH3 结构域,也降低了 MASL1 的表达和 Raf/MEK/ERK 激酶的磷酸化,从而减少了 EPO 诱导的 CD34+细胞的红细胞分化。重要的是,我们还证明 MASL1 与 Raf1 物理相互作用。总之,我们的数据提供了关于 MASL1 通过 Raf/MEK/ERK 通路调节红细胞生成的新见解。