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Robo4 cooperates with CXCR4 to specify hematopoietic stem cell localization to bone marrow niches.

机译:Robo4与CXCR4合作,将造血干细胞定位于骨髓壁。

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Specific bone marrow (BM) niches are critical for hematopoietic stem cell (HSC) function during both normal hematopoiesis and in stem cell transplantation therapy. We demonstrate that the guidance molecule Robo4 functions to specifically anchor HSCs to BM niches. Robo4-deficient HSCs displayed poor localization to BM niches and drastically reduced long-term reconstitution capability while retaining multilineage potential. Cxcr4, a critical regulator of HSC location, is upregulated in Robo4(-/-) HSCs to compensate for Robo4 loss. Robo4 deletion led to altered HSC mobilization efficiency, revealing that inhibition of both Cxcr4- and Robo4-mediated niche interactions are necessary for efficient HSC mobilization. Surprisingly, we found that WT HSCs express very low levels of Cxcr4 and respond poorly to Cxcr4 manipulation relative to other hematopoietic cells. We conclude that Robo4 cooperates with Cxcr4 to endow HSCs with competitive access to limited stem cell niches, and we propose Robo4 as a therapeutic target in HSC transplantation therapy.
机译:在正常的造血过程和干细胞移植治疗中,特定的骨髓(BM)壁对于造血干细胞(HSC)功能至关重要。我们证明,指导分子Robo4的功能是将HSCs特异性锚定于BM生态位。缺乏Robo4的HSC显示出对BM壁poor的局限性,并且在保留多谱系潜力的同时,大大降低了其长期重建能力。 Cxcr4是HSC位置的关键调节器,在Robo4(-/-)HSC中被上调以补偿Robo4的损失。 Robo4缺失导致HSC动员效率发生变化,表明抑制Cxcr4-和Robo4介导的利基相互作用对于有效HSC动员是必需的。令人惊讶地,我们发现WT HSC相对于其他造血细胞表达非常低的Cxcr4水平,并且对Cxcr4操纵反应差。我们得出结论,Robo4与Cxcr4合作,赋予HSC竞争性进入有限的干细胞壁competitive的竞争能力,并且我们提出Robo4作为HSC移植治疗的治疗靶标。

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