Lu Suiru, Tang Yongkang, Yin Shaozhen, Sun Lei
Shandong Provincial Key Laboratory of Animal Cell and Developmental Biology, School of Life Sciences, Shandong University, Qingdao, 266237, China.
Taishan College, Shandong University, Qingdao, 266237, China.
Adv Biotechnol (Singap). 2024 Feb 2;2(1):3. doi: 10.1007/s44307-024-00010-2.
RNA is an intermediary between DNA and protein, a catalyzer of biochemical reactions, and a regulator of genes and transcripts. RNA structures are essential for complicated functions. Recent years have witnessed rapid advancements in RNA secondary structure probing techniques. These technological strides provided comprehensive insights into RNA structures, which significantly contributed to our understanding of diverse cellular regulatory processes, including gene regulation, epigenetic regulation, and post-transactional regulation. Meanwhile, they have facilitated the creation of therapeutic tools for tackling human diseases. Despite their therapeutic applications, RNA structure probing methods also offer a promising avenue for exploring the mechanisms of human diseases, potentially providing the key to overcoming existing research constraints and obtaining the in-depth information necessary for a deeper understanding of disease mechanisms.
RNA是DNA与蛋白质之间的媒介,是生化反应的催化剂,也是基因和转录本的调节因子。RNA结构对于复杂功能至关重要。近年来,RNA二级结构探测技术取得了迅速进展。这些技术进步为RNA结构提供了全面的见解,极大地促进了我们对包括基因调控、表观遗传调控和转录后调控在内的各种细胞调节过程的理解。同时,它们推动了用于治疗人类疾病的治疗工具的开发。尽管有治疗应用,但RNA结构探测方法也为探索人类疾病机制提供了一条有前景的途径,有可能提供克服现有研究限制并获得深入了解疾病机制所需深度信息的关键。