4.4 Article

Some theoretical aspects of reprogramming the standard genetic code

期刊

GENETICS
卷 218, 期 1, 页码 -

出版社

OXFORD UNIV PRESS INC
DOI: 10.1093/genetics/iyab040

关键词

genetic code; codon; code reprogramming; code expansion

资金

  1. National Science Centre, Poland (Narodowe Centrum Nauki, Polska) [2017/27/N/NZ2/00403]

向作者/读者索取更多资源

Reprogramming the standard genetic code to incorporate non-canonical amino acids offers new possibilities for medicine, industry, and biotechnology. Various methods of code engineering are available to store new genetic information and produce proteins with novel properties. The study provides a theoretical background for optimal genetic code expansion, discussing the robustness of the new coding system and the analysis of optimal codon sets using graph theory.
Reprogramming of the standard genetic code to include non-canonical amino acids (ncAAs) opens new prospects for medicine, industry, and biotechnology. There are several methods of code engineering, which allow us for storing new genetic information in DNA sequences and producing proteins with new properties. Here, we provided a theoretical background for the optimal genetic code expansion, which may find application in the experimental design of the genetic code. We assumed that the expanded genetic code includes both canonical and non-canonical information stored in 64 classical codons. What is more, the new coding system is robust to point mutations and minimizes the possibility of reversion from the new to old information. In order to find such codes, we applied graph theory to analyze the properties of optimal codon sets. We presented the formal procedure in finding the optimal codes with various number of vacant codons that could be assigned to new amino acids. Finally, we discussed the optimal number of the newly incorporated ncAAs and also the optimal size of codon groups that can be assigned to ncAAs.

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