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首页> 外文期刊>Stem cell reviews and Reports >Dissection of Signaling Events Downstream of the c-Mpl Receptor in Murine Hematopoietic Stem Cells Via Motif-Engineered Chimeric Receptors
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Dissection of Signaling Events Downstream of the c-Mpl Receptor in Murine Hematopoietic Stem Cells Via Motif-Engineered Chimeric Receptors

机译:通过主题工程嵌合受体解剖C-MPL受体下游信号事件的信号事件

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Hematopoietic stem cells (HSCs) are a valuable resource in transplantation medicine. Cytokines are often used to culture HSCs aiming at better clinical outcomes through enhancement of HSC reconstitution capability. Roles for each signal molecule downstream of receptors in HSCs, however, remain puzzling due to complexity of the cytokine-signaling network. Engineered receptors that are non-responsive to endogenous cytokines represent an attractive tool for dissection of signaling events. We here tested a previously developed chimeric receptor (CR) system in primary murine HSCs, target cells that are indispensable for analysis of stem cell activity. Each CR contains tyrosine motifs that enable selective activation of signal molecules located downstream of the c-Mpl receptor upon stimulation by an artificial ligand. Signaling through a control CR with a wild-type c-Mpl cytoplasmic tail sufficed to enhance HSC proliferation and colony formation in cooperation with stem cell factor (SCF). Among a series of CRs, only one compatible with selective Stat5 activation showed similar positive effects. The HSCs maintained ex vivo in these environments retained long-term reconstitution ability following transplantation. This ability was also demonstrated in secondary recipients, indicating effective transmission of stem cell-supportive signals into HSCs via these artificial CRs during culture. Selective activation of Stat5 through CR ex vivo favored preservation of lymphoid potential in long-term reconstituting HSCs, but not of myeloid potential, exemplifying possible dissection of signals downstream of c-Mpl. These CR systems therefore offer a useful tool to scrutinize complex signaling pathways in HSCs.
机译:造血干细胞(HSC)是移植医学中的宝贵资源。细胞因子通常用于培养HSC,通过提高HSC重构能力来旨在更好地临床结果。然而,由于细胞因子信令网络的复杂性,每个信号分子的角色在HSC中的受体下游仍然令人困惑。对内源细胞因子无响应的工程受体代表了用于解剖信号事件的有吸引力的工具。我们在这里测试了先前在初级鼠HSC的嵌合受体(CR)系统,靶细胞是对干细胞活性分析的不可或缺的靶细胞。每个CR含有酪氨酸基序,其在通过人造配体刺激时能够在刺激后选择性激活位于C-MPL受体下游的信号分子。通过具有野生型C-MPL细胞质尾尾的对照CR的信号传导,可提高与干细胞因子(SCF)合作的HSC增殖和殖民地形成。在一系列CRS中,只有一个与选择性STAT5激活兼容,显示出相似的正效。在移植后,HSC在这些环境中保持了长期重建能力。在副接受者中也证明了这种能力,表明在培养期间通过这些人造CRS有效地将干细胞支持性信号转化为HSC。 STAT5通过CR exVivo的选择性激活有助于在长期重构HSC中保存淋巴潜力,但不具有粒径势,示例在C-MPL下游的可能解剖信号。因此,这些CR系统提供了一种有用的工具,可以在HSC中审查复杂的信令路径。

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