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Development of Defective and Persistent Sendai Virus Vector: A UNIQUE GENE DELIVERY/EXPRESSION SYSTEM IDEAL FOR CELL REPROGRAMMING*

机译:缺陷型和持久性仙台病毒载体的开发:独特的基因传递/表达系统,非常适合细胞重编程*

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摘要

The ectopic expression of transcription factors can reprogram differentiated tissue cells into induced pluripotent stem cells. However, this is a slow and inefficient process, depending on the simultaneous delivery of multiple genes encoding essential reprogramming factors and on their sustained expression in target cells. Moreover, once cell reprogramming is accomplished, these exogenous reprogramming factors should be replaced with their endogenous counterparts for establishing autoregulated pluripotency. Complete and designed removal of the exogenous genes from the reprogrammed cells would be an ideal option for satisfying this latter requisite as well as for minimizing the risk of malignant cell transformation. However, no single gene delivery/expression system has ever been equipped with these contradictory characteristics. Here we report the development of a novel replication-defective and persistent Sendai virus (SeVdp) vector based on a noncytopathic variant virus, which fulfills all of these requirements for cell reprogramming. The SeVdp vector could accommodate up to four exogenous genes, deliver them efficiently into various mammalian cells (including primary tissue cells and human hematopoietic stem cells) and express them stably in the cytoplasm at a prefixed balance. Furthermore, interfering with viral transcription/replication using siRNA could erase the genomic RNA of SeVdp vector from the target cells quickly and thoroughly. A SeVdp vector installed with Oct4/Sox2/Klf4/c-Myc could reprogram mouse primary fibroblasts quite efficiently; ∼1% of the cells were reprogrammed to Nanog-positive induced pluripotent stem cells without chromosomal gene integration. Thus, this SeVdp vector has potential as a tool for advanced cell reprogramming and for stem cell research.
机译:转录因子的异位表达可以将分化的组织细胞重编程为诱导性多能干细胞。但是,这是一个缓慢且效率低下的过程,具体取决于同时编码多个编码必需重编程因子的基因及其在靶细胞中的持续表达。此外,一旦完成细胞重编程,应将这些外源重编程因子替换为其内源对应物,以建立自动调节的多能性。从重编程的细胞中完全和设计地去除外源基因将是满足后一个需求以及将恶性细胞转化的风险降至最低的理想选择。但是,还没有单基因传递/表达系统具备这些矛盾的特征。在这里,我们报告了一种基于非细胞变异病毒的新型复制缺陷型和持久性仙台病毒(SeVdp)载体的开发,该载体可满足细胞重编程的所有这些要求。 SeVdp载体最多可容纳四个外源基因,将它们有效地传递到各种哺乳动物细胞(包括原代组织细胞和人类造血干细胞)中,并在细胞质中稳定表达并达到预定的平衡。此外,使用siRNA干扰病毒转录/复制可从目标细胞中快速彻底清除SeVdp载体的基因组RNA。装有Oct4 / Sox2 / Klf4 / c-Myc的SeVdp载体可以非常有效地对小鼠原代成纤维细胞进行编程。约有1%的细胞被重新编程为Nanog阳性诱导的多能干细胞,而没有染色体基因整合。因此,该SeVdp载体具有潜力用于高级细胞重编程和干细胞研究。

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