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Pharmacological Manipulation of the RAR/RXR Signaling Pathway Maintains the Repopulating Capacity of Hematopoietic Stem Cells in Culture

机译:RAR / RXR信号通路的药理学操作可维持培养中造血干细胞的繁殖能力。

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摘要

The retinoid X receptor (RXR) contributes to the regulation of diverse biological pathways via its role as a heterodimeric partner of several nuclear receptors. However, RXR has no established role in the regulation of hematopoietic stem cell (HSC) fate. In this study, we sought to determine whether direct modulation of RXR signaling could impact human HSC self-renewal or differentiation. Treatment of human CD34+CD38−lin− cells with LG1506, a selective RXR modulator, inhibited the differentiation of HSCs in culture and maintained long-term repopulating HSCs in culture that were otherwise lost in response to cytokine treatment. Further studies revealed that LG1506 had a distinct mechanism of action in that it facilitated the recruitment of corepressors to the retinoic acid receptor (RAR)/RXR complex at target gene promoters, suggesting that this molecule was functioning as an inverse agonist in the context of this heterodimer. Interestingly, using combinatorial peptide phage display, we identified unique surfaces presented on RXR when occupied by LG1506 and demonstrated that other modulators that exhibited these properties functioned similarly at both a mechanistic and biological level. These data indicate that the RAR/RXR heterodimer is a critical regulator of human HSC differentiation, and pharmacological modulation of RXR signaling prevents the loss of human HSCs that otherwise occurs in short-term culture.
机译:类视黄醇X受体(RXR)通过其作为几种核受体的异二聚体伴侣的作用而有助于调节多种生物途径。但是,RXR在调节造血干细胞(HSC)命运方面没有确定的作用。在这项研究中,我们试图确定RXR信号的直接调节是否会影响人类HSC的自我更新或分化。用选择性的RXR调节剂LG1506处理人CD34 + CD38-lin-细胞,可抑制培养物中HSC的分化,并维持培养物中长期繁殖的HSC,否则这些HSC因细胞因子处理而丢失。进一步的研究表明,LG1506具有独特的作用机制,因为它有助于在目标基因启动子上向视黄酸受体(RAR)/ RXR复合体募集共抗氧化剂,表明该分子在此背景下起反向激动剂的作用。异二聚体。有趣的是,使用组合肽噬菌体展示,我们确定了被LG1506占据时RXR上呈现的独特表面,并证明了表现出这些特性的其他调节剂在机制和生物学水平上的功能相似。这些数据表明,RAR / RXR异二聚体是人类HSC分化的关键调节剂,RXR信号传导的药理学调节可防止人类HSC的丢失,否则这种损失会在短期培养中发生。

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