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Different thresholds of Notch signaling bias human precursor cells toward B-, NK-, monocytic/dendritic-, or T-cell lineage in thymus microenvironment

机译:Notch信号传导的不同阈值使人前体细胞偏向胸腺微环境中的B-,NK-,单核细胞/树突细胞或T-细胞谱系

摘要

Notch receptors are involved in lineage decisions in multiple developmental scenarios, including hematopoiesis. Here, we treated hybrid human-mouse fetal thymus organ culture with the gamma-secretase inhibitor 7 (N-[N-(3,5-difluorophenyl)-Lalanyl]-S-phenyl-glycine t-butyl ester) (DAPT) to establish the role of Notch signaling in human hematopoietic lineage decisions. The effect of inhibition of Notch signaling was studied starting from cord blood CD34(+) or thymic CD34(+)CD1(-), CD34(+)CD1(+), or CD4ISP progenitors. Treatment of cord blood CD34(+) cells with low DAPT concentrations results in aberrant CD4ISP and CD4/CD8 double-positive (DP) thymocytes, which are negative for intracellular T-cell receptor beta (TCR beta). On culture with intermediate and high DAPT concentrations, thymic CD34(+)CD1(-) cells still generate aberrant intracellular TCR beta(-) DIP cells that have undergone DJ but not VDJ recombination. Inhibition of Notch signaling shifts differentiation into non-T cells in a thymic microenvironment, depending on the starting progenitor cells: thymic CD34(+)CD1(+) cells do not generate non-T cells, thymic CD34(+)CD1(-) cells generate INK cells and monocytic/dendritic cells, and cord blood CD34(+)Lin(-) cells generate B, INK, and monocytic/dendritic cells in the presence of DAPT Our data indicate that Notch signaling is crucial to direct human progenitor cells into the T-cell lineage, whereas it has a negative impact on B, NK, and monocytic/dendritic cell generation in a dose-dependent fashion.
机译:Notch受体参与包括血细胞生成在内的多种发育情况的谱系决定。在这里,我们用γ-分泌酶抑制剂7(N- [N-(3,5-二氟苯基)-丙氨酰] -S-苯基甘氨酸叔丁酯)(DAPT)处理了人鼠混合胎胸腺器官培养物,建立Notch信号在人类造血谱系决定中的作用。从脐带血CD34(+)或胸腺CD34(+)CD1(-),CD34(+)CD1(+)或CD4ISP祖细胞开始研究了Notch信号的抑制作用。用低DAPT浓度处理脐血CD34(+)细胞会导致异常的CD4ISP和CD4 / CD8双阳性(DP)胸腺细胞,它们对细胞内T细胞受体beta(TCR beta)呈阴性。在具有中等和高DAPT浓度的培养中,胸腺CD34(+)CD1(-)细胞仍然会产生异常的细胞内TCR beta(-)DIP细胞,这些细胞已经历过DJ而非VDJ重组。 Notch信号的抑制将在胸腺微环境中转移分化为非T细胞,具体取决于起始祖细胞:胸腺CD34(+)CD1(+)细胞不生成非T细胞,胸腺CD34(+)CD1(-)细胞会产生INK细胞和单核/树突状细胞,而脐血CD34(+)Li​​n(-)细胞在DAPT存在下会产生B,INK和单核/树突状细胞。我们的数据表明,Notch信号对于指导人类祖细胞至关重要进入T细胞谱系,但对B,NK和单核/树突细胞的产生具有剂量依赖性。

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