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CD41 Marks the Initial Myelo-Erythroid Lineage Specification in Adult Mouse Hematopoiesis: Redefinition of Murine Common Myeloid Progenitor

机译:CD41标志着成年小鼠造血的初始骨髓-红系谱系规范:小鼠常见髓系祖细胞的重新定义。

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Previous studies have predicted that reciprocal activation of GATA-1 and PU.1 regulates myelo-erythroid versus myelo-lymphoid lineage commitment in early hematopoiesis. Such PU. 1-activating myelo-lymphoid progenitors exist within the lymphoid-primed multipotent progenitor (LMPP) population at the primitive Lineage(-)Sca-1(+) c-Kit(+) (LSK) stage. We here show that the counterpart of GATA-1-activating myelo-erythroid progenitor resides also at the LSK stage, expressing CD41 at a high level. Purified CD41(hi) LSK cells showed exceedingly strong and prolonged myelo-erythroid-restricted reconstitution, and primed myelo-erythroid gene expression with a more primitive molecular signature as compared to the original common myeloid progenitor (CMP). The CD41(hi) LSK cells more strongly contributed to emergent and malignant myelopoiesis than LMPPs, and produced the original CMP by downregulating Sca-1 and CD41, suggesting that they are the earliest CMPs. Thus, the hematopoietic developmental map should be revised by integrating the primary branchpoint comprised of the new, isolatable CD41(hi) CMP and the LMPP populations.
机译:先前的研究预测,在早期造血过程中,GATA-1和PU.1的相互激活会调节骨髓红系和骨髓淋巴系的分化。这样的PU。 1-激活骨髓淋巴祖细胞存在于原始Lineage(-)Sca-1(+)c-Kit(+)(LSK)阶段的淋巴启动多能祖细胞(LMPP)中。我们在这里显示,激活GATA-1的骨髓红系祖细胞的对应物也位于LSK阶段,以高水平表达CD41。纯化的CD41(hi)LSK细胞显示出极强的和延长的骨髓红系限制重组,并与原始普通髓系祖细胞(CMP)相比,引发了具有更原始分子特征的骨髓红系基因表达。 CD41(hi)LSK细胞比LMPP更强地促成新发和恶性骨髓生成,并通过下调Sca-1和CD41产生了原始的CMP,表明它们是最早的CMP。因此,应通过整合由新的,可分离的CD41(hi)CMP和LMPP种群组成的主要分支点来修订造血发育图。

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