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Glycoengineering of E-selectin ligands by intracellular versus extracellular fucosylation differentially affects osteotropism of human mesenchymal stem cells

机译:通过细胞内和细胞外岩藻糖基化对E-选择蛋白配体的糖工程化差异影响人间充质干细胞的向骨性

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摘要

Human mesenchymal stem cells (MSCs) hold great promise in cellular therapeutics for skeletal diseases but lack expression of E-selectin ligands that direct homing of blood-borne cells to bone marrow. Previously, we described a method to engineer E-selectin ligands on the MSC surface by exofucosylating cells with fucosyltransferase VI (FTVI) and its donor sugar, GDP-Fucose, enforcing transient surface expression of the potent E-selectin ligand HCELL with resultant enhanced osteotropism of intravenously administered cells. Here, we sought to determine whether E-selectin ligands created via FTVI-exofucosylation are distinct in identity and function to those created by FTVI expressed intracellularly. To this end, we introduced synthetic modified mRNA encoding FTVI (FUT6-modRNA) into human MSCs. FTVI-exofucosylation (i.e., extracellular fucosylation) and FUT6-modRNA transfection (i.e., intracellular fucosylation) produced similar peak increases in cell surface E-selectin ligand levels, and shear-based functional assays showed comparable increases in tethering/rolling on human endothelial cells expressing E-selectin. However, biochemical analyses revealed that intracellular fucosylation induced expression of both intracellular and cell surface E-selectin ligands and also induced a more sustained expression of E-selectin ligands compared to extracellular fucosylation. Notably, live imaging studies to assess homing of human MSC to mouse calvarium revealed more osteotropism following intravenous administration of intracellularly-fucosylated cells compared to extracellularly-fucosylated cells. This study represents the first direct analysis of E-selectin ligand expression programmed on human MSCs by FTVI-mediated intracellular versus extracellular fucosylation. The observed differential biologic effects of FTVI activity in these two contexts may yield new strategies for improving the efficacy of human MSCs in clinical applications.
机译:人间充质干细胞(MSC)在骨骼疾病的细胞疗法中具有广阔的前景,但缺乏E-选择素配体的表达,该E-选择素的配体将血源性细胞归巢到骨髓。以前,我们描述了一种通过用岩藻糖基转移酶VI(FTVI)及其供体糖GDP-岩藻糖对岩藻糖基化细胞来工程改造MSC表面上E-选择素配体的方法,从而强制强效E-选择素配体HCELL的瞬时表面表达,从而增强了向骨性静脉内施用的细胞。在这里,我们试图确定通过FTVI-胞外岩藻糖基化产生的E-选择素配体在身份和功能上是否与在细胞内表达的FTVI所产生的那些相同。为此,我们将合成的修饰的编码FTVI的mRNA(FUT6-modRNA)引入人MSC。 FTVI-胞外岩藻糖基化(即细胞外岩藻糖基化)和FUT6-modRNA转染(即细胞内岩藻糖基化)在细胞表面E-选择素配体水平上产生了相似的峰值增加,基于剪切的功能测定显示在人内皮细胞上的系留/滚动的可比性增加表达E-选择素。然而,生化分析显示,与胞外岩藻糖基化相比,胞内岩藻糖基化诱导细胞内和细胞表面E-选择素配体的表达,并且还诱导E-选择素配体的持续表达。值得注意的是,用于评估人MSC向小鼠颅骨归巢的实时成像研究显示,与细胞外岩藻糖基化细胞相比,静脉内注射细胞内岩藻糖基化细胞后,骨质疏松性更高。这项研究代表了通过FTVI介导的细胞内岩藻糖基化与细胞外岩藻糖基化在人类MSC上编程的E选择素配体表达的首次直接分析。在这两种情况下观察到的FTVI活性的不同生物学效应可能会为提高人类MSC在临床应用中的功效提供新的策略。

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