Skipping the co-expression problem: the new 2A "CHYSEL" technology.

Pablo de Felipe
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引用次数: 110

Abstract

The rapid progress in the field of genomics is increasing our knowledge of multi-gene diseases. However, any realistic hope of gene therapy treatment for those diseases needs first to address the problem of co-ordinately co-expressing several transgenes. Currently, the use of internal ribosomal entry sites (IRESs) is the strategy chosen by many researchers to ensure co-expression. The large sizes of the IRESs (~0.5 kb), and the difficulties of ensuring a well-balanced co-expression, have prompted several researchers to imitate a co-expression strategy used by many viruses: to express several proteins as a polyprotein. A small peptide of 18 amino acids (2A) from the foot-and-mouth disease virus (FMDV) is being used to avoid the need of proteinases to process the polyprotein. FMDV 2A is introduced as a linker between two proteins to allow autonomous intra-ribosomal self-processing of polyproteins. Recent reports have shown that this sequence is compatible with different sub-cellular targeting signals and can be used to co-express up to four proteins from a single retroviral vector. This short peptide provides a tool to allow the co-expression of multiple proteins from a single vector, a useful technology for those working with heteromultimeric proteins, biochemical pathways or combined/synergistic phenomena.

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跳过共表达问题:新的2A“CHYSEL”技术。
基因组学领域的快速发展增加了我们对多基因疾病的认识。然而,对这些疾病进行基因治疗的任何现实希望都需要首先解决几个转基因协调共同表达的问题。目前,利用内核糖体进入位点(IRESs)是许多研究人员选择的确保共表达的策略。IRESs的大尺寸(约0.5 kb),以及确保良好平衡的共表达的困难,促使一些研究人员模仿许多病毒使用的共表达策略:将几种蛋白质表达为多蛋白。一种来自口蹄疫病毒(FMDV)的18个氨基酸(2A)的小肽被用来避免需要蛋白酶来处理多蛋白。FMDV 2A作为两种蛋白质之间的连接物引入,允许多蛋白在核糖体内自主自我加工。最近的报道表明,该序列与不同的亚细胞靶向信号兼容,可用于从单个逆转录病毒载体共表达多达四种蛋白质。这种短肽提供了一种工具,允许从一个载体中共表达多个蛋白质,这是一种有用的技术,用于处理异多聚蛋白,生化途径或联合/协同现象。
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