A novel approach of cell-free peptide synthesis and SNPs detection using nano-circular single-stranded DNA.

Tatsuo Ohmichi, Aki Takashima, Naoki Sugimoto
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Abstract

Development of peptide/protein synthesis is very important for investigating the functions of peptides and proteins. The advantages of cell-free synthesis, which has been extensively developed, include the ability to synthesize toxic proteins, aggregated proteins and proteins containing unnatural amino acids. However, this promising approach does not have a high reaction yield. In this study, we examine whether the rolling synchronization system, which produces long RNAs with a repeated sequence encoded by very small circular ssDNAs without the promoter sequence for RNA polymerase, can be used for cell-free peptide synthesis to improve the reaction yield. As a result, we have found that rolling synchronization is useful for large-scale cell-free peptide/protein synthesis.

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一种利用纳米环状单链DNA进行无细胞肽合成和snp检测的新方法。
肽/蛋白合成的发展对研究肽和蛋白质的功能具有重要意义。无细胞合成的优点已经得到了广泛的发展,包括能够合成有毒蛋白质、聚集蛋白质和含有非天然氨基酸的蛋白质。然而,这种有希望的方法没有高的反应产率。在本研究中,我们研究了滚动同步系统是否可以用于无细胞肽合成,以提高反应产率。滚动同步系统产生由非常小的环状ssdna编码的重复序列的长RNA,而不含RNA聚合酶的启动子序列。因此,我们发现滚动同步对于大规模的无细胞肽/蛋白质合成是有用的。
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