首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Transgene Expression of α(12)-Fucosyltransferase-I (FUT1) in Tumor Cells Selectively Inhibits Sialyl-Lewis x Expression and Binding to E-Selectin without Affecting Synthesis of Sialyl-Lewis a or Binding to P-Selectin
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Transgene Expression of α(12)-Fucosyltransferase-I (FUT1) in Tumor Cells Selectively Inhibits Sialyl-Lewis x Expression and Binding to E-Selectin without Affecting Synthesis of Sialyl-Lewis a or Binding to P-Selectin

机译:α(12)-岩藻糖基转移酶-I(FUT1)在肿瘤细胞中的转基因表达选择性抑制唾液酸化-刘易斯x表达并与E-选择蛋白结合而不会影响唾液酸化-刘易斯a的合成或与P-选择素的结合。

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摘要

During inflammation, E- and P-selectins appear on activated endothelial cells to interact with leukocytes through sialyl-Lewis x and sialyl-Lewis a antigens (sLex/a). These selectins can also interact with tumor cells in a sialyl-Lewis-dependent manner and for this reason, they are thought to play a key role in metastasis. Diverting the biosynthesis of sialyl-Lewis antigens toward nonadhesive structures is an attractive gene therapy for preventing the hematogenous metastatic spread of cancers. We have previously shown that transfection of α(1,2)-fucosyltransferase-I (FUT1) in Chinese hamster ovary (CHO) cells had a slight effect on the overall sialylation while the synthesis of sLEx was dramatically prevented. We herein delivered the gene of FUT1 by a human immunodeficiency virus-derived lentiviral vector to three human cancer cell lines including pancreatic (BxPC3), hepatic (HepG2), and colonic (HT-29) cancer cells. We found that on FUT1 transduction, all cells exhibited a dramatic decrease in sLex synthesis with a concomitant increase in Ley and Leb expression, without any detectable effect on the level of cell surface sLea antigens. In parallel, FUT1-transduced HT-29 and HepG2 cells, but not BxPC3 cells, failed to interact with E-selectin as assessed by E-selectin-binding assay or dynamic adhesion to activated endothelial cells. We show also that transduced FUT1 efficiently fucosylates the P-selectin ligand PSGL-1 without altering P-selectin binding. These results have important implications for understanding cell-specific reactions underlying the synthesis of selectin ligands in cancer cells and may provide a basis for the development of anti-metastatic gene therapy.
机译:在炎症过程中,E-选择素和P-选择素通过活化的唾液酸化-Lewis x和唾液酸化-Lewis a抗原(sLe x / a )出现在活化的内皮细胞上,与白细胞相互作用。这些选择素还可以以唾液酸-刘易斯依赖性的方式与肿瘤细胞相互作用,因此,据认为它们在转移中起关键作用。将唾液酸化-刘易斯抗原的生物合成转移至非粘附结构是防止癌症的血源性转移扩散的有吸引力的基因疗法。先前我们已经表明,在中国仓鼠卵巢(CHO)细胞中转染α(1,2)-岩藻糖基转移酶-I(FUT1)对总体唾液酸化有轻微影响,而sLE x 的合成大大预防。我们在这里通过人类免疫缺陷病毒衍生的慢病毒载体将FUT1的基因传递给三种人类癌细胞系,包括胰腺(BxPC3),肝(HepG2)和结肠(HT-29)癌细胞。我们发现,在FUT1转导过程中,所有细胞的sLe x 合成均显着下降,同时Le y 和Le b 表达随之增加,对细胞表面sLe a 抗原水平没有任何可检测的影响。平行地,如通过E-选择蛋白结合测定或动态粘附至活化的内皮细胞所评估的,FUT1转导的HT-29和HepG2细胞而非BxPC3细胞未能与E-选择蛋白相互作用。我们还表明,转导的FUT1有效岩藻糖化P-选择素配体PSGL-1,而不会改变P-选择素的结合。这些结果对于理解癌细胞中选择素配体的合成背后的细胞特异性反应具有重要意义,并可能为抗转移基因治疗的发展提供基础。

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