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首页> 外文期刊>Metabolic engineering >Generation of serum-stabilized retroviruses: reduction of alpha1,3gal-epitope synthesis in a murine NIH3T3-derived packaging cell line by expression of chimeric glycosyltransferases.
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Generation of serum-stabilized retroviruses: reduction of alpha1,3gal-epitope synthesis in a murine NIH3T3-derived packaging cell line by expression of chimeric glycosyltransferases.

机译:血清稳定的逆转录病毒的产生:通过嵌合糖基转移酶的表达降低鼠NIH3T3衍生包装细胞系中α1,3gal-表位的合成。

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摘要

Retroviral vectors released from mouse-derived packaging cell lines are inactivated in human sera by naturally occurring antibodies due to the recognition of Galalpha1,3Galbeta1,4GlcNAc (alphagal-epitope) decorated surface proteins. In this study, an extensive analysis of the glycosylation potential of NIH3T3-derived PA317 packaging cells using combined MALDI/TOF-MS and HPAE-PAD reveals that 34% of the N-glycan moiety represents alphagal-epitope containing structures. Stable expression of glycosyltransferases and transport signal chimeras has been demonstrated to represent an efficient tool to alter cell- and species-specific glycosylation (Grabenhorst and Conradt, 1999. J. Biol. Chem. 274, 36107-36116). In order to reduce alphagal-epitope synthesis selected chimeric glycosyltransferases were constructed by fusing Golgi-signal sequences for compartment-specific localization with the catalytic domain of alpha2,3-sialyltransferase (ST3). Stable expression of these constructs in these cells resulted in a significant reduced alphagal-epitope synthesis, and moreover, a release of retroviral vectors showing an up to 3.5-fold increase in serum stability. Thus, our results suggest that the stably transfected cells stably transfected with chimeric glycosyltransferases compete efficiently with endogenous alpha1,3-galactosyltransferase. This approach allows favored glycodesign and we anticipate the applicability of such improved retroviral vectors produced by glycosylation engineered host cells for in vivo gene therapy and, furthermore, suggest the therapeutic benefit of this technology for xenotransplantation.
机译:从小鼠衍生的包装细胞系释放的逆转录病毒载体在人血清中被天然存在的抗体灭活,这是由于识别了Galalpha1,3Galbeta1,4GlcNAc(alphagal-epitope)装饰的表面蛋白。在这项研究中,使用组合的MALDI / TOF-MS和HPAE-PAD对NIH3T3衍生的PA317包装细胞的糖基化潜力进行了广泛的分析,发现34%的N-聚糖部分代表含有alphagal-表位的结构。已经证实糖基转移酶和运输信号嵌合体的稳定表达代表改变细胞和物种特异性糖基化的有效工具(Grabenhorst和Conradt,1999.J.Biol.Chem.274,36107-36116)。为了减少αgal-表位的合成,通过将高尔基体信号序列与α2,3-唾液酸转移酶(ST3)的催化结构域融合以进行区室特异性定位,从而构建了选定的嵌合糖基转移酶。这些构建体在这些细胞中的稳定表达导致αgal-表位的合成显着减少,此外,逆转录病毒载体的释放显示血清稳定性提高了多达3.5倍。因此,我们的结果表明被嵌合糖基转移酶稳定转染的稳定转染细胞与内源性α1,3-半乳糖基转移酶有效竞争。该方法允许有利的糖设计,并且我们预期由糖基化改造的宿主细胞产生的这种改良的逆转录病毒载体在体内基因治疗中的适用性,并且进一步暗示了该技术对于异种移植的治疗益处。

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