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无菌-α基序蛋白-14 在造血中的生理和再生功能。

Physiological and regenerative functions of sterile-α motif protein-14 in hematopoiesis.

机构信息

Department of Genetics, Cell Biology and Anatomy, University of Nebraska Medical Center, Omaha, NE.

Department of Genetics, Cell Biology and Anatomy, University of Nebraska Medical Center, Omaha, NE.

出版信息

Exp Hematol. 2023 Dec;128:38-47. doi: 10.1016/j.exphem.2023.09.003. Epub 2023 Sep 16.

Abstract

Sterile α-motif domain-14 (Samd14) protein expression increases the regenerative capacity of the erythroid system. Samd14 is transcriptionally upregulated and promotes cell signaling via the receptor tyrosine kinase Kit in a critical window of acute erythroid regeneration. We generated a hematopoietic-specific conditional Samd14 knockout mouse model (Samd14-CKO) to study the role of Samd14 in hematopoiesis. The Samd14-CKO mouse was viable and exhibited no steady-state hematopoietic phenotype. Samd14-CKO mice were hypersensitive to 5-fluorouracil, resulting in more severe anemia during recovery and impaired erythroid progenitor colony formation. Ex vivo, Samd14-CKO hematopoietic progenitors were defective in their ability to form mast cells. Samd14-CKO mast cells exhibited altered Kit/stem cell factor (SCF), IL-3/IL-3R signaling, and less granularity than Samd14-FL/FL cells. Our findings indicate that Samd14 promotes both erythroid and mast cell functions. The Samd14-CKO mouse phenotype exhibits striking similarities to the Kit mice, which carry Kit mutations resulting in reduced tyrosine kinase-dependent signaling, causing mast cell and erythroid abnormalities. The Samd14-CKO mouse model is a new tool for studying hematologic pathologies involving Kit signaling.

摘要

sterile α-motif domain-14 (Samd14) 蛋白表达增加了红细胞系统的再生能力。Samd14 在急性红细胞再生的关键窗口期转录上调,并通过受体酪氨酸激酶 Kit 促进细胞信号转导。我们生成了一种造血特异性条件性 Samd14 敲除小鼠模型(Samd14-CKO),以研究 Samd14 在造血中的作用。Samd14-CKO 小鼠具有活力,没有稳定状态的造血表型。Samd14-CKO 小鼠对 5-氟尿嘧啶敏感,导致恢复期间更严重的贫血和红细胞祖细胞集落形成受损。在体外,Samd14-CKO 造血祖细胞形成肥大细胞的能力受损。Samd14-CKO 肥大细胞表现出 Kit/干细胞因子 (SCF)、IL-3/IL-3R 信号的改变,以及比 Samd14-FL/FL 细胞更少的颗粒。我们的发现表明 Samd14 促进了红细胞和肥大细胞的功能。Samd14-CKO 小鼠表型与 Kit 小鼠非常相似,Kit 小鼠携带导致酪氨酸激酶依赖性信号减少的 Kit 突变,导致肥大细胞和红细胞异常。Samd14-CKO 小鼠模型是研究涉及 Kit 信号的血液病理学的新工具。

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Signaling mechanisms and cis -regulatory control of Samd14 in erythroid regeneration.红细胞再生中Samd14的信号传导机制和顺式调控
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