首页> 美国卫生研究院文献>Journal of Stem Cells Regenerative Medicine >Regulated expression of CXCR4 constitutive active mutants revealed the up-modulated chemotaxis and up-regulation of genes crucial for CXCR4 mediated homing and engraftment of hematopoietic stem/progenitor cells
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Regulated expression of CXCR4 constitutive active mutants revealed the up-modulated chemotaxis and up-regulation of genes crucial for CXCR4 mediated homing and engraftment of hematopoietic stem/progenitor cells

机译:CXCR4组成型活性突变体的调控表达揭示了对CXCR4介导的造血干/祖细胞归巢和移植至关重要的基因的上调趋化性和上调

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摘要

SDF-1/CXCR4 axis plays a principle role in the homing and engraftment of hematopoietic stem/progenitor cells (HSPCs), a process that defines cells ability to reach and seed recipient bone marrow niche following their intravenous infusion. However, the proper functioning of CXCR4 downstream signaling depends upon consistent optimal expression of both SDF-1 ligand and its receptor CXCR4, which in turn is variable and regulated by several factors. The constitutive active mutants of CXCR4 (N119A and N119S) being able to induce autonomous downstream signaling, overcome the limitation of ligand-receptor interaction for induction of CXCR4 signaling. Therefore, we intended to explore their potential in Chemotaxis; a key cellular process which crucially regulates cells homing to bone marrow. In present study, Tet-on inducible gene expression vector system was used for doxycycline inducible regulated transgene expression of CXCR4 active mutants in hematopoietic stem progenitor cell line K-562. Both of these mutants revealed significantly enhanced Chemotaxis to SDF-1 gradient as compared to wild type. Furthermore, gene expression profiling of these genetically engineered cells as assessed by microarray analysis revealed the up-regulation of group of genes that are known to play a crucial role in CXCR4 mediated cells homing and engraftment. Hence, this study suggest the potential prospects of CXCR4 active mutants in research and development aimed to improve the efficiency of cells in the mechanism of homing and engraftment process.
机译:SDF-1 / CXCR4轴在造血干/祖细胞(HSPC)的归巢和植入过程中起主要作用,该过程定义了细胞在静脉内输注后能够到达并接种受体骨髓壁的能力。但是,CXCR4下游信号传导的适当功能取决于SDF-1配体及其受体CXCR4的一致最优表达,而后者又是可变的,并受多种因素调控。 CXCR4的组成型活性突变体(N119A和N119S)能够诱导自主的下游信号传导,克服了配体-受体相互作用对CXCR4信号传导的限制。因此,我们打算探索它们在趋化性中的潜力;关键的细胞过程,关键地调节归巢于骨髓的细胞。在本研究中,Tet-on诱导型基因表达载体系统用于强力霉素诱导的CXCR4活性突变体在造血干祖细胞K-562细胞系中的转基因表达。与野生型相比,这两个突变体均显示出趋化性增强了对SDF-1的趋化性。此外,如通过微阵列分析所评估的,这些基因工程细胞的基因表达谱揭示了已知在CXCR4介导的细胞归巢和植入中起关键作用的一组基因的上调。因此,这项研究表明CXCR4活性突变体在研究和开发中的潜在前景,旨在提高细胞在归巢和植入过程中的效率。

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