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Experimental challenges of sense codon reassignment: An innovative approach to genetic code expansion

机译:密码子重分配的实验挑战:遗传密码扩展的创新方法

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The addition of new and versatile chemical and biological properties to proteins pursued through incorporation of non-canonical amino acids is at present primarily achieved by stop codon suppression. However, it is critical to find new "blank" codons to increase the variety and efficiency of such insertions, thereby taking 'sense codon recoding' to center stage in the field of genetic code expansion. Current thought optimistically suggests the use of the pyrrolysine system coupled with re-synthesis of genomic information towards achieving sense codon reassignment. Upon review of the serious experimental challenges reported in recent studies, we propose that success in this area will depend on the re-synthesis of genomes, but also on 'rewiring' the mechanism of protein synthesis and of its quality control.
机译:目前,主要通过终止密码子抑制来实现通过掺入非经典氨基酸而向蛋白质中添加新的通用化学和生物学特性。然而,找到新的“空白”密码子以增加此类插入的多样性和效率,从而将“有义密码子重新编码”置于遗传密码扩展领域的中心位置至关重要。当前的想法乐观地建议使用吡咯赖氨酸系统结合基因组信息的重新合成来实现有义密码子的重新分配。在回顾了最近研究中报道的严重实验挑战后,我们认为在这一领域的成功将取决于基因组的重新合成,而且还取决于“重新合成”蛋白质合成的机制及其质量控制。

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