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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Spry1 as a novel regulator of erythropoiesis, EPO/EPOR target, and suppressor of JAK2
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Spry1 as a novel regulator of erythropoiesis, EPO/EPOR target, and suppressor of JAK2

机译:Spry1作为一种新的红细胞生成调节剂,EPO / EPOR靶标和JAK2抑制剂

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摘要

Sprouty proteins are established modifiers of receptor tyrosine kinase (RTK) signaling and play important roles in vasculogenesis, bone morphogenesis, and renal uteric branching. Little is understood, however, concerning possible roles for these molecular adaptors during hematopoiesis. Within erythroid lineage, Spry1 was observed to be selectively and highly expressed at CFU-e to erythroblast stages. In analyses of possible functional roles, an Mx1-Cre approach was applied to conditionally delete Spry1. At steady state, Spry1 deletion selectively perturbed erythroid development and led to reticulocytosis plus heightened splenic erythropoiesis. When challenged by hemolysis, Spry1-null mice exhibited worsened anemia and delayed recovery. During short-term marrow transplantation, Spry1-null donor marrow also failed to efficiently rescue the erythron. In each anemia model, however, hyperexpansion of erythroid progenitors was observed. Spry function depends on phosphorylation of a conserved N-terminal PY motif. Through an LC-MS/MS approach, Spry1 was discovered to be regulated via the erythropoietin receptor (EPOR), with marked EPO-induced Spry1-PY53 phosphorylation observed. When EPOR signaling pathways were analyzed within Spry1-deficient erythroid progenitors, hyperactivation of not only Erk1,2 but also Jak2 was observed. Studies implicate Spry1 as a novel regulator of erythropoiesis during anemia, transducer of EPOR signals, and candidate suppressor of Jak2 activity.
机译:杂散蛋白是受体酪氨酸激酶(RTK)信号转导的修饰因子,在血管生成,骨形态发生和肾子宫分支中起重要作用。然而,关于造血过程中这些分子衔接子的可能作用了解甚少。在类红细胞谱系中,观察到Spry1在CFU-e到成红细胞阶段选择性表达并高表达。在可能的功能角色分析中,使用Mx1-Cre方法有条件地删除Spry1。在稳定状态下,Spry1缺失选择性地干扰了类红细胞的发育,并导致网状细胞增多症和脾性红细胞增多症。当受到溶血攻击时,Spry1空小鼠表现出更严重的贫血和恢复延迟。在短期骨髓移植期间,Spry1缺失的供体骨髓也未能有效挽救红系。然而,在每个贫血模型中,都观察到红系祖细胞过度膨胀。 Spry功能取决于保守的N末端PY基序的磷酸化。通过LC-MS / MS方法,发现Spry1受促红细胞生成素受体(EPOR)调控,观察到明显的EPO诱导的Spry1-PY53磷酸化。当在Spry1缺陷型红系祖细胞中分析EPOR信号通路时,不仅观察到Erk1,2,而且还观察到Jak2的过度激活。研究表明Spry1是贫血期间红细胞生成的新型调节剂,EPOR信号的转导物和Jak2活性的候选抑制物。

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