通过光交联加速胞嘧啶脱氨作用
Acceleration of the Deamination of Cytosine through Photo-Crosslinking.
作者信息
Sethi Siddhant, Takashima Yasuharu, Nakamura Shigetaka, Wan Licheng, Honda Nozomi, Fujimoto Kenzo
机构信息
Bioscience, Biotechnology, and Biomedical Engineering Research Area, Japan Advanced Institute of Science and Technology, Asahi-dai 1-1, Ishikawa, Nomi 923-1292, Japan.
出版信息
Curr Issues Mol Biol. 2023 May 29;45(6):4687-4700. doi: 10.3390/cimb45060298.
Herein, we report the major factor for deamination reaction rate acceleration, i.e., hydrophilicity, by using various 5-substituted target cytosines and by carrying out deamination at high temperatures. Through substitution of the groups at the 5'-position of the cytosine, the effect of hydrophilicity was understood. It was then used to compare the various modifications of the photo-cross-linkable moiety as well as the effect of the counter base of the cytosine to edit both DNA and RNA. Furthermore, we were able to achieve cytosine deamination at 37 °C with a half-life in the order of a few hours.
在此,我们通过使用各种5-取代的目标胞嘧啶并在高温下进行脱氨反应,报道了脱氨反应速率加速的主要因素,即亲水性。通过取代胞嘧啶5'-位的基团,了解了亲水性的影响。然后用它来比较光可交联部分的各种修饰以及胞嘧啶的配对碱基对DNA和RNA编辑的影响。此外,我们能够在37℃下实现胞嘧啶脱氨,半衰期约为几个小时。
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