UT Southwestern Medical Center, Departments of Pharmacology and Biochemistry, Dallas, Texas 75205, USA.
UT Southwestern Medical Center, Departments of Pharmacology and Biochemistry, Dallas, Texas 75205, USA
RNA. 2023 Apr;29(4):415-422. doi: 10.1261/rna.079500.122. Epub 2023 Jan 19.
RNA interference is almost always associated with post-transcriptional silencing in the cytoplasm. MicroRNAs (miRNAs) and critical RNAi protein factors like argonaute (AGO) and trinucleotide repeat binding containing 6 protein (TNRC6), however, are also found in cell nuclei, suggesting that nuclear miRNAs may be targets for gene regulation. Designed small duplex RNAs (dsRNAs) can modulate nuclear processes such as transcription and splicing, suggesting that they can also provide leads for therapeutic discovery. The goal of this Perspective is to provide the background on nuclear RNAi necessary to guide discussions on whether nuclear RNAi can play a role in therapeutic development programs.
RNA 干扰几乎总是与细胞质中的转录后沉默相关。然而,微 RNA(miRNA)和关键的 RNAi 蛋白因子,如 Argonaute(AGO)和三核苷酸重复结合蛋白 6(TNRC6),也存在于细胞核中,这表明核 miRNA 可能是基因调控的靶点。设计的小双链 RNA(dsRNA)可以调节转录和剪接等核过程,这表明它们也可以为治疗发现提供线索。本观点的目的是提供核 RNAi 的背景知识,以指导关于核 RNAi 是否可以在治疗开发计划中发挥作用的讨论。