Chair of Biochemistry IV, Biophysical Chemistry, University of Bayreuth, Bayreuth, Germany.
Molecular Systems Biology Unit, EMBL Heidelberg, Heidelberg, Germany.
RNA Biol. 2024 Jan;21(1):24-38. doi: 10.1080/15476286.2024.2415801. Epub 2024 Oct 22.
RNA helicases are an evolutionary conserved class of nucleoside triphosphate dependent enzymes found in all kingdoms of life. Their cellular functions range from transcription regulation up to maintaining genomic stability and viral defence. As dysregulation of RNA helicases has been shown to be involved in several cancers and various diseases, RNA helicases are potential therapeutic targets. However, for selective targeting of a specific RNA helicase, it is crucial to develop a detailed understanding about its dynamics and regulation on a molecular and structural level. Deciphering unique features of specific RNA helicases is of fundamental importance not only for future drug development but also to deepen our understanding of RNA helicase regulation and function in cellular processes. In this review, we discuss recent insights into regulation mechanisms of RNA helicases and highlight models which demonstrate the interplay between helicase structure and their functions.
RNA 解旋酶是一类在所有生命领域中都存在的、进化上保守的核苷三磷酸依赖酶。它们的细胞功能范围从转录调控到维持基因组稳定性和抗病毒防御。由于 RNA 解旋酶的失调已被证明与多种癌症和各种疾病有关,因此 RNA 解旋酶是潜在的治疗靶点。然而,为了选择性地针对特定的 RNA 解旋酶,开发对其在分子和结构水平上的动力学和调控的详细了解是至关重要的。破译特定 RNA 解旋酶的独特特征不仅对未来的药物开发具有重要意义,而且有助于加深我们对 RNA 解旋酶在细胞过程中的调控和功能的理解。在这篇综述中,我们讨论了 RNA 解旋酶调控机制的最新研究进展,并强调了展示解旋酶结构与其功能相互作用的模型。