首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Ordering human CD34+CD10−CD19+ pre/pro-B-cell and CD19− common lymphoid progenitor stages in two pro-B-cell development pathways
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Ordering human CD34+CD10−CD19+ pre/pro-B-cell and CD19− common lymphoid progenitor stages in two pro-B-cell development pathways

机译:在两个前B细胞发育途径中订购人CD34 + CD10-CD19 +前/前B细胞和CD19-常见淋巴祖细胞阶段

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摘要

Studies here respond to two long-standing questions: Are human “pre/pro-B” CD34+CD10CD19+ and “common lymphoid progenitor (CLP)/early-B” CD34+CD10+CD19 alternate precursors to “pro-B” CD34+CD19+CD10+ cells, and do the pro-B cells that arise from these progenitors belong to the same or distinct B-cell development pathways? Using flow cytometry, gene expression profiling, and Ig VH-D-JH sequencing, we monitor the initial 10 generations of development of sorted cord blood CD34highLineage pluripotential progenitors growing in bone marrow S17 stroma cocultures. We show that (i) multipotent progenitors (CD34+CD45RA+CD10CD19) directly generate an initial wave of Pax5+TdT “unilineage” pre/pro-B cells and a later wave of “multilineage” CLP/early-B cells and (ii) the cells generated in these successive stages act as precursors for distinct pro-B cells through two independent layered pathways. Studies by others have tracked the origin of B-lineage leukemias in elderly mice to the mouse B-1a pre/pro-B lineage, which lacks the TdT activity that diversifies the VH-D-JH Ig heavy chain joints found in the early-B or B-2 lineage. Here, we show a similar divergence in human B-cell development pathways between the Pax5+TdT pre/pro-B differentiation pathway that gives rise to infant B-lineage leukemias and the early-B pathway.
机译:这里的研究回答了两个长期存在的问题:人类的“ pre / pro-B” CD34 + CD10 - CD19 + 和“普通淋巴样”祖细胞(CLP)/早期B” CD34 + CD10 + CD19 -替代“ pro-B” CD34 + < / sup> CD19 + CD10 + 细胞,由这些祖细胞产生的pro-B细胞是否属于相同或不同的B细胞发育途径?使用流式细胞仪,基因表达谱和Ig VH-D-JH测序,我们监测排序的脐血CD34 high 谱系-多能祖细胞生长的最初10代在骨髓S17基质共培养中。我们显示(i)多能祖细胞(CD34 + CD45RA + CD10 - CD19 -)直接生成初始Pax5 + TdT -“单系”前/ pro-B细胞和“多系” CLP / early-B细胞的后一波,以及(ii)产生的细胞在这些连续的阶段中,它们通过两个独立的分层途径充当不同的pro-B细胞的前体。他人的研究追踪了老年小鼠的B系白血病起源于小鼠B-1a pre / pro-B系,该系缺乏TdT活性,该活性使早期发现的VH-D-JH Ig重链关节多样化。 B或B-2血统。在这里,我们在Pax5 + TdT - pre / pro-B分化途径之间的人类B细胞发育途径中显示了相似的分化,从而导致了婴儿B系白血病和早期B途径。

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