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Two Proteins for the Price of One: The Design of Maximally Compressed Coding Sequences

机译:两种蛋白质为一个:最大压缩编码序列的设计

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The emerging field of synthetic biology moves beyond conventional genetic manipulation to construct novel life forms which do not originate in nature. We explore the problem of designing the provably shortest genomic sequence to encode a given set of genes by exploiting alternate reading frames. We present an algorithm for designing the shortest DNA sequence simultaneously encoding two given amino acid sequences. We show that the coding sequence of naturally occurring pairs of overlapping genes approach maximum compression. We also investigate the impact of alternate coding matrices on overlapping sequence design. Finally, we discuss an interesting application for overlapping gene design, namely the interleaving of an antibiotic resistance gene into a target gene inserted into a virus or plasmid for amplification.
机译:合成生物学的新兴领域超出了传统的遗传操作,构建了不源于自然的新型生命形式。我们探讨设计可释放的最短基因组序列以通过利用替代阅读框来编码给定基因集的可怕最短基因组序列。我们提出了一种设计用于设计最短DNA序列的算法,同时编码两个给定氨基酸序列。我们表明天然存在的重叠基因对的编码序列接近最大压缩。我们还研究了备用编码矩阵对重叠序列设计的影响。最后,我们讨论重叠基因设计的有趣应用程序,即将抗生素抗性基因的交织成插入病毒或质粒的靶基因中进行扩增。

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