WeChat Mini Program
Old Version Features

The Network of Replication, Transcription, and Reverse Transcription of a Synthetic Genetic Cassette.

Angewandte Chemie International Edition(2020)

Katholieke Univ Leuven

Cited 5|Views25
Abstract
Synthetic nucleic acids, with four non-canonical nucleobases, can function as genetic materials. A comprehensive analysis of PCR amplification, transcription, reverse transcription, and cloning was done to screen for alternative genetic monomers. A small library of six modified nucleobases was selected: the modified 2 '-deoxyribonucleoside (dZTPs) and ribonucleoside (rZTPs) triphosphates of 7-deaza-adenine, 5-chlorouracil, 7-deaza-guanine or inosine together with 5-fluorocytosine or 5-bromocytosine. The fragments composed of one to four modified nucleotides (denoted as DZA) have been successfully recognized and transcribed to natural or modified RNA (denoted as RZA) by T7 RNA polymerase. The fully modified RZA fragment could be reverse transcribed and then amplified in the presence of various dZTPs. Noticeably, modified fragments could function as genetic templates in vivo by encoding the 678 base pair gene of a fluorescent protein in bacteria. These results demonstrate the existence of a fully simulated genetic circuit that uses synthetic materials.
More
Translated text
Key words
artificial genes,non-canonical nucleotides,nucleic acids,synthetic biology,transcription
PDF
Bibtex
AI Read Science
Must-Reading Tree
Example
Generate MRT to find the research sequence of this paper
Data Disclaimer
The page data are from open Internet sources, cooperative publishers and automatic analysis results through AI technology. We do not make any commitments and guarantees for the validity, accuracy, correctness, reliability, completeness and timeliness of the page data. If you have any questions, please contact us by email: report@aminer.cn
Chat Paper

要点】:论文研究了含有四种非标准核苷酸的合成核酸作为遗传材料的功能,成功构建了一个利用合成材料实现的完全模拟遗传电路。

方法】:通过PCR扩增、转录、反转录和克隆的综合分析,筛选出能够替代传统遗传单体的六种修饰核苷酸。

实验】:实验中使用了T7 RNA聚合酶识别并转录由一到四个修饰核苷酸组成的片段(DZA)至自然或修饰RNA(RZA),随后RZA片段在多种dZTPs存在下进行反转录并扩增。实验结果证明,这些修饰片段能够在细菌中作为遗传模板,编码678碱基对的荧光蛋白基因。