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利用二氨基磷酸增强益生元磷酸化并调节核苷的区域选择性†

Enhancing Prebiotic Phosphorylation and Modulating the Regioselectivity of Nucleosides with Diamidophosphate†.

作者信息

Cruz Harold A, Jiménez Eddy I, Krishnamurthy Ramanarayanan

机构信息

Department of Chemistry, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, United States.

出版信息

J Am Chem Soc. 2023 Nov 1;145(43):23781-23793. doi: 10.1021/jacs.3c08539. Epub 2023 Oct 19.

Abstract

Among the many prebiotic phosphorylation chemistries investigated, diamidophosphate (DAP) has shown promising potential for nucleoside phosphorylation. Herein, we show that DAP's phosphorylation capability is enhanced significantly (up to 90%) in wet-dry cycles by a range of prebiotically plausible pHs (6-10) and temperatures (up to 80 °C) in the presence of additives such as formamide, cyanamide, urea, guanidine, 2-aminoimidazole, and hydantoin. For ribonucleosides, the main products are the 2',3'-cyclic phosphates along with the corresponding 2'- and 3'-phosphates, while deoxyribonucleosides form 5'- and 3'-phosphates, the ratios of which are affected by cycles and the presence and nature of the additives. A simple change of temperature to 80 °C with additives leads to higher conversion yields (≈80-90%) with an increased level of 5'-phosphorylation (≈40-49%). This demonstration of enhancing and controlling the regioselectivity of DAP-mediated phosphorylation by a range of additives and conditions potentiates transitioning to the search for more efficient catalysts, enabling regiospecific phosphorylations and oligonucleotide formation in the same milieu and setting.

摘要

在众多被研究的益生元磷酸化化学过程中,二氨基磷酸(DAP)已显示出在核苷磷酸化方面具有可观的潜力。在此,我们表明,在诸如甲酰胺、氰胺、尿素、胍、2-氨基咪唑和乙内酰脲等添加剂存在的情况下,通过一系列益生元条件下合理的pH值(6 - 10)和温度(高达80°C),DAP的磷酸化能力在干湿循环中显著增强(高达90%)。对于核糖核苷,主要产物是2',3'-环磷酸酯以及相应的2'-和3'-磷酸酯,而脱氧核糖核苷则形成5'-和3'-磷酸酯,其比例受循环以及添加剂的存在和性质影响。在添加剂存在的情况下,简单地将温度升至80°C会导致更高的转化率(约80 - 90%),同时5'-磷酸化水平增加(约40 - 49%)。通过一系列添加剂和条件对DAP介导的磷酸化区域选择性进行增强和控制的这一证明,有助于转向寻找更有效的催化剂,从而在同一环境和条件下实现区域特异性磷酸化和寡核苷酸形成。

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