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Cullin-5控制巨核细胞定向干细胞的数量以防止小鼠血小板增多。

Cullin-5 controls the number of megakaryocyte-committed stem cells to prevent thrombocytosis in mice.

作者信息

Kauppi Maria, Hyland Craig D, Viney Elizabeth M, White Christine A, de Graaf Carolyn A, Welch AnneMarie E, Yousef Jumana, Dagley Laura F, Emery-Corbin Samantha J, Di Rago Ladina, Kueh Andrew J, Herold Marco J, Hilton Douglas J, Babon Jeffrey J, Nicola Nicos A, Behrens Kira, Alexander Warren S

机构信息

Blood Cells and Blood Cancer Division, The Walter and Eliza Hall Institute of Medical Research, Parkville, VIC, Australia.

Department of Medical Biology, The University of Melbourne, Parkville, VIC, Australia.

出版信息

Blood. 2025 Mar 6;145(10):1034-1046. doi: 10.1182/blood.2024025406.

Abstract

Cullin-5 (Cul5) coordinates the assembly of cullin-RING-E3 ubiquitin ligase complexes that include the suppressors of cytokine signaling (SOCS)-box-containing proteins. The SOCS-box proteins function to recruit specific substrates to the complex for ubiquitination and degradation. In hematopoiesis, SOCS-box proteins are best known for regulating the actions of cytokines that utilize the JAK-STAT signaling pathway. However, the roles of most SOCS-box proteins have not been studied in physiological contexts and any actions for Cul5/SOCS complexes in signaling by several hematopoietic cytokines, including thrombopoietin (TPO) and interleukin-3 (IL-3), remain unknown. To define additional potential roles for Cul5/SOCS complexes, we generated mice lacking Cul5 in hematopoiesis; the absence of Cul5 is predicted to impair the SOCS-box-dependent actions of all proteins that contain this motif. Here, we show that Cul5-deficient mice develop excess megakaryopoiesis and thrombocytosis revealing a novel mechanism of negative regulation of megakaryocyte-committed stem cells, a distinct population within the hematopoietic stem cell pool that have been shown to rapidly, perhaps directly, generate megakaryocytes, and which are produced in excess in the absence of Cul5. Cul5-deficient megakaryopoiesis is distinctive in being largely independent of TPO/myeloproliferative leukemia protein and involves signaling via the β-common and/or β-IL-3 receptors, with evidence of deregulated responses to IL-3. This process is independent of the interferon-α/β receptor, previously implicated in inflammation-induced activation of stem-like megakaryocyte progenitor cells.

摘要

Cullin-5(Cul5)协调包含细胞因子信号抑制因子(SOCS)盒蛋白的cullin-RING-E3泛素连接酶复合物的组装。SOCS盒蛋白的功能是将特定底物募集到复合物中进行泛素化和降解。在造血过程中,SOCS盒蛋白最为人所知的是调节利用JAK-STAT信号通路的细胞因子的作用。然而,大多数SOCS盒蛋白在生理环境中的作用尚未得到研究,Cul5/SOCS复合物在包括血小板生成素(TPO)和白细胞介素-3(IL-3)在内的几种造血细胞因子信号传导中的任何作用仍然未知。为了确定Cul5/SOCS复合物的其他潜在作用,我们构建了造血系统中缺乏Cul5的小鼠;预计Cul5的缺失会损害所有含有该基序的蛋白的SOCS盒依赖性作用。在这里,我们表明,缺乏Cul5的小鼠会出现过度的巨核细胞生成和血小板增多,揭示了巨核细胞定向干细胞负调控的一种新机制,巨核细胞定向干细胞是造血干细胞池中的一个独特群体,已被证明能迅速,也许是直接地产生巨核细胞,并且在缺乏Cul5的情况下会过量产生。缺乏Cul5的巨核细胞生成具有独特性,在很大程度上独立于TPO/骨髓增殖性白血病蛋白,并且涉及通过β-共同受体和/或β-IL-3受体的信号传导,有证据表明对IL-3的反应失调。这个过程独立于干扰素-α/β受体,干扰素-α/β受体以前被认为与炎症诱导的干细胞样巨核细胞祖细胞的激活有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c27/11923429/08d4a3e32501/BLOOD_BLD-2024-025406-ga1.jpg

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