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首页> 外文期刊>The journal of clinical investigation >ANGPTL2-containing small extracellular vesicles from vascular endothelial cells accelerate leukemia progression
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ANGPTL2-containing small extracellular vesicles from vascular endothelial cells accelerate leukemia progression

机译:血管内皮细胞含有含有的小细胞外囊加速白血病进展

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Small extracellular vesicles (SEVs) are functional messengers of certain cellular niches that permit noncontact cell communications. Whether niche-specific SEVs fulfill this role in cancer is unclear. Here, we used 7 cell type–specific mouse Cre lines to conditionally knock out Vps33b in Cdh5~(+) or Tie2~(+) endothelial cells (ECs), Lepr~(+) BM perivascular cells, Osx~(+) osteoprogenitor cells, Pf4~(+) megakaryocytes, and Tcf21~(+) spleen stromal cells. We then examined the effects of reduced SEV secretion on progression of MLL-AF9–induced acute myeloid leukemia (AML), as well as normal hematopoiesis. Blocking SEV secretion from ECs, but not perivascular cells, megakaryocytes, or spleen stromal cells, markedly delayed the leukemia progression. Notably, reducing SEV production from ECs had no effect on normal hematopoiesis. Protein analysis showed that EC-derived SEVs contained a high level of ANGPTL2, which accelerated leukemia progression via binding to the LILRB2 receptor. Moreover, ANGPTL2-SEVs released from ECs were governed by VPS33B. Importantly, ANGPTL2-SEVs were also required for primary human AML cell maintenance. These findings demonstrate a role of niche-specific SEVs in cancer development and suggest targeting of ANGPTL2-SEVs from ECs as a potential strategy to interfere with certain types of AML.
机译:小细胞外囊泡(SEVS)是某些细胞核桃的功能性信使,其允许非接触式细胞通信。特定于癌症特异性的SED是否符合癌症的这种作用尚不清楚。在这里,我们使用7个细胞类型特异性鼠标CRE线来在CDH5〜(+)或TIE2〜(+)内皮细胞(ECS)中有条件地敲除VPS33B,LEPR〜(+)BM血管细胞,OSX〜(+)骨催化剂细胞,PF4〜(+)巨核细胞和TCF21〜(+)脾脏基质细胞。然后,我们研究了DEP SEC分泌减少了MLL-AF9诱导的急性髓性白血病(AML)的效果,以及正常血小杂化。阻断ECS的Sex分泌,但不是血管外细胞,巨核细胞或脾脏基质细胞,显着延迟白血病进展。值得注意的是,从ECS减少SEV生产对正常血液没有影响。蛋白质分析表明,EC衍生的SED含有高水平的AngptL2,其通过与LiLRB2受体结合加速白血病进展。此外,从ECS释放的Angptl2-Sevs由VPS33B控制。重要的是,原发性人AML细胞维持也需要Angptl2-Sevs。这些发现表明了癌症特异性的SEVS在癌症发展中的作用,并表明Angptl2-Sevs从ECS作为干扰某些类型的AML的潜在策略。

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