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首页> 外文期刊>Nature Communications >β4GALT1 controls β1 integrin function to govern thrombopoiesis and hematopoietic stem cell homeostasis
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β4GALT1 controls β1 integrin function to govern thrombopoiesis and hematopoietic stem cell homeostasis

机译:β4gALT1对照β1整合蛋白功能治理血小板和造血干细胞稳态

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Glycosylation is critical to megakaryocyte (MK)?and thrombopoiesis in the context of gene mutations that affect sialylation and galactosylation. Here, we identify the conserved B4galt1 gene as a critical regulator of thrombopoiesis in MKs. β4GalT1 deficiency increases the number of fully differentiated MKs. However, the resulting lack of glycosylation enhances β1 integrin signaling leading to dysplastic MKs with severely impaired demarcation system formation and thrombopoiesis. Platelets lacking β4GalT1 adhere avidly to β1 integrin ligands laminin, fibronectin, and collagen, while other platelet functions are normal. Impaired thrombopoiesis leads to increased plasma thrombopoietin (TPO) levels and perturbed hematopoietic stem cells (HSCs). Remarkably, β1 integrin deletion, specifically in MKs, restores thrombopoiesis. TPO and CXCL12 regulate β4GalT1 in the MK lineage. Thus, our findings establish a non-redundant role for β4GalT1 in the regulation of β1 integrin function and signaling during thrombopoiesis. Defective thrombopoiesis and lack of β4GalT1 further affect HSC homeostasis.
机译:糖基化对巨核细胞(MK)至关重要?在基因突变的基因突变的背景下的血栓形成,影响唾液酸化和半乳糖基化。在这里,我们将保守的B4GALT1基因鉴定为MKS中血栓形成的临界调节剂。 β4GALT1缺乏增加了完全分化的MK的数量。然而,所得缺乏糖基化增强了β1整联蛋白信号,导致具有严重受损的分界系统形成和血小板血症的发育障碍MKS。缺乏β4gALT1的血小板敏捷地粘附在β1整联蛋白配体层内膜,纤连蛋白和胶原中,而其他血小板功能是正常的。受损的血栓形成导致血浆血球生成素(TPO)水平和扰动造血干细胞(HSC)增加。值得注意的是,β1整合蛋白缺失,特别是在MKS中,恢复血栓形成。 TPO和CXCL12调节MK谱系中的β4gALT1。因此,我们的发现在β1整合蛋白功能和血栓发射期间的信号传导中建立了β4GALT1的非冗余作用。有缺陷的血栓形成和缺乏β4GALT1进一步影响HSC稳态。

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