Department of Materials Science and Engineering, Pohang University of Science and Technology (POSTECH), Pohang, Gyeongbuk 37673, South Korea.
Institute for Convergence Research and Education in Advanced Technology (I-CREATE), Yonsei University, Incheon 21983, South Korea.
Nucleic Acids Res. 2024 Jan 11;52(1):73-86. doi: 10.1093/nar/gkad1093.
Beyond storage and transmission of genetic information in cellular life, nucleic acids can perform diverse interesting functions, including specific target recognition and biochemical reaction acceleration; the versatile biopolymers, however, are acutely vulnerable to hydrolysis-driven degradation. Here, we demonstrate that the cage effect of choline dihydrogen phosphate permits active folding of nucleic acids like water, but prevents their phosphodiester hydrolysis unlike water. The choline-based ionic liquid not only serves as a universal inhibitor of nucleases, exceptionally extending half-lives of nucleic acids up to 6 500 000 times, but highly useful tasks of nucleic acids (e.g. mRNA detection of molecular beacons, ligand recognition of aptamers, and transesterification reaction of ribozymes) can be also conducted with well-conserved affinities and specificities. As liberated from the function loss and degradation risk, the presence of undesired and unknown nucleases does not undermine desired molecular functions of nucleic acids without hydrolysis artifacts even in nuclease cocktails and human saliva.
除了在细胞生命中存储和传输遗传信息外,核酸还可以发挥多种有趣的功能,包括特定的目标识别和生化反应加速;然而,这些多功能的生物聚合物非常容易受到水解驱动的降解。在这里,我们证明了磷酸二氢胆碱的笼状效应允许核酸像水一样进行主动折叠,但与水不同的是,它可以防止磷酸二酯键的水解。基于胆碱的离子液体不仅可以作为核酸酶的通用抑制剂,将核酸的半衰期延长高达 650 万倍,而且还可以进行核酸的高有用任务(例如分子信标中的 mRNA 检测、适体的配体识别以及核酶的转酯化反应),并且保持良好的亲和力和特异性。由于摆脱了功能丧失和降解风险,即使在核酸酶混合物和人唾液中存在未被期望的和未知的核酸酶,也不会破坏没有水解产物的核酸的所需分子功能。