School of Pharmacy, Changchun University of Chinese Medicine, 1035 Boshuo Road, Changchun 130117, China.
Int J Mol Sci. 2023 Jan 25;24(3):2375. doi: 10.3390/ijms24032375.
The repeat expansions are the main genetic cause of various neurodegeneration diseases. More than ten kinds of repeat sequences with different lengths, locations, and structures have been confirmed in the past two decades. G-rich repeat sequences, such as CGG and GGGGCC, are reported to form functional G-quadruplexes, participating in many important bioprocesses. In this review, we conducted an overview concerning the contribution of G-quadruplex in repeat expansion disorders and summarized related mechanisms in current pathological studies, including the increasing genetic instabilities in replication and transcription, the toxic RNA foci formed in neurons, and the loss/gain function of proteins and peptides. Furthermore, novel strategies targeting G-quadruplex repeats were developed based on the understanding of disease mechanism. Small molecules and proteins binding to G-quadruplex in repeat expansions were investigated to protect neurons from dysfunction and delay the progression of neurodegeneration. In addition, the effects of environment on the stability of G-quadruplex were discussed, which might be critical factors in the pathological study of repeat expansion disorders.
重复扩展是各种神经退行性疾病的主要遗传原因。在过去的二十年中,已经确认了十多种具有不同长度、位置和结构的重复序列。富含 G 的重复序列,如 CGG 和 GGGGCC,据报道可以形成功能性 G-四链体,参与许多重要的生物过程。在这篇综述中,我们对 G-四链体在重复扩展疾病中的作用进行了概述,并总结了当前病理研究中的相关机制,包括复制和转录过程中遗传不稳定性的增加、神经元中形成的毒性 RNA 焦点,以及蛋白质和肽的功能丧失/获得。此外,基于对疾病机制的理解,开发了针对 G-四链体重复的新策略。研究了与重复扩展中的 G-四链体结合的小分子和蛋白质,以保护神经元免受功能障碍并延缓神经退行性变的进展。此外,还讨论了环境对 G-四链体稳定性的影响,这可能是重复扩展疾病病理研究的关键因素。