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Redirecting Lentiviral Vectors Pseudotyped with Sindbis Virus-Derived Envelope Proteins to DC-SIGN by Modification of N-Linked Glycans of Envelope Proteins ▿

机译:通过对N-连接的聚糖蛋白进行修饰,将用Sindbis病毒衍生的蛋白进行假型化的慢病毒载体重定向至DC-SIGN。

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摘要

Redirecting the tropism of viral vectors enables specific transduction of selected cells by direct administration of vectors. We previously developed targeting lentiviral vectors by pseudotyping with modified Sindbis virus envelope proteins. These modified Sindbis virus envelope proteins have mutations in their original receptor-binding regions to eliminate their natural tropisms, and they are conjugated with targeting proteins, including antibodies and peptides, to confer their tropisms on target cells. We investigated whether our targeting vectors interact with DC-SIGN, which traps many types of viruses and gene therapy vectors by binding to the N-glycans of their envelope proteins. We found that these vectors do not interact with DC-SIGN. When these vectors were produced in the presence of deoxymannojirimycin, which alters the structures of N-glycans from complex to high mannose, these vectors used DC-SIGN as their receptor. Genetic analysis demonstrated that the N-glycans at E2 amino acid (aa) 196 and E1 aa 139 mediate binding to DC-SIGN, which supports the results of a previous report of cryoelectron microscopy analysis. In addition, we investigated whether modification of the N-glycan structures could activate serum complement activity, possibly by the lectin pathway of complement activation. DC-SIGN-targeted transduction occurs in the presence of human serum complement, demonstrating that high-mannose structure N-glycans of the envelope proteins do not activate human serum complement. These results indicate that the strategy of redirecting viral vectors according to alterations of their N-glycan structures would enable the vectors to target specific cells types expressing particular types of lectins.
机译:重定向病毒载体的向性使得能够通过直接施用载体来特异性转导所选细胞。我们以前通过使用修饰的Sindbis病毒包膜蛋白进行假型开发来开发靶向慢病毒载体。这些修饰的Sindbis病毒包膜蛋白在其原始受体结合区具有突变,以消除其天然嗜性,并与包括抗体和肽在内的靶向蛋白缀合,以将其嗜性赋予靶细胞。我们调查了我们的靶向载体是否与DC-SIGN相互作用,DC-SIGN通过与它们的包膜蛋白的N-聚糖结合来捕获许多类型的病毒和基因治疗载体。我们发现这些载体不与DC-SIGN相互作用。当在脱氧甘露糖霉素存在下生产这些载体时,脱氧甘露糖霉素将N-聚糖的结构从复合物变为高甘露糖,这些载体使用DC-SIGN作为其受体。遗传分析表明,E2氨基酸(aa)196和E1氨基酸139处的N-聚糖介导与DC-SIGN的结合,这支持了以前的低温电子显微镜分析报告的结果。另外,我们研究了N-聚糖结构的修饰是否可以通过补体激活的凝集素途径激活血清补体活性。 DC-SIGN靶向转导发生在人血清补体的存在下,这表明包膜蛋白的高甘露糖结构N-聚糖不会激活人血清补体。这些结果表明,根据病毒载体N-聚糖结构的改变来重定向病毒载体的策略将使载体能够靶向表达特定类型凝集素的特定细胞类型。

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