Jiang Na, Yang Hekun, Lei Yi, Qin Weida, Xiong Huifang, Chen Kuan, Mei Kunrong, Li Gongyu, Mu Xin, Chen Ruibing
School of Pharmaceutical Science and Technology, Faculty of Medicine, Tianjin University, Tianjin, China.
Tianjin Key Laboratory for Modern Drug Delivery and High-Efficiency, Tianjin, China.
Nat Commun. 2025 Apr 11;16(1):3433. doi: 10.1038/s41467-025-58704-7.
Double-stranded RNA (dsRNA) binding proteins (dsRBPs) play crucial roles in various cellular processes, especially in the innate immune response. Comprehensive characterization of dsRBPs is essential to understand the intricate mechanisms for dsRNA sensing and response. Traditional methods have predominantly relied on affinity purification, favoring the isolation of strong dsRNA binders. Here, we adopt the proteome integral solubility alteration (PISA) workflow for characterizing dsRBPs, resulting in the observation of 18 known dsRBPs and the identification of 200 potential dsRBPs. Next, we focus on zinc finger protein 385 A (ZNF385A) and discover that its knockout activates the transcription of interferon-β in the absence of immunogenic stimuli. The knockout of ZNF385A elevates the level of endogenous dsRNAs, especially transcripts associated with retroelements, such as short interspersed nuclear element (SINE), long interspersed nuclear element (LINE), and long terminal repeat (LTR). Moreover, loss of ZNF385A enhances the bioactivity of 5-Aza-2'-deoxycytidine (5-AZA-CdR) and tumor-killing effect of NK cells. Our findings greatly expand the dsRBP reservoir and contribute to the understanding of cellular dsRNA homeostasis.
双链RNA(dsRNA)结合蛋白(dsRBPs)在各种细胞过程中发挥着关键作用,尤其是在先天免疫反应中。对dsRBPs进行全面表征对于理解dsRNA感知和反应的复杂机制至关重要。传统方法主要依赖亲和纯化,有利于分离强dsRNA结合剂。在这里,我们采用蛋白质组整体溶解度改变(PISA)工作流程来表征dsRBPs,结果观察到18种已知的dsRBPs,并鉴定出200种潜在的dsRBPs。接下来,我们聚焦于锌指蛋白385A(ZNF385A),发现其敲除在没有免疫原性刺激的情况下激活了干扰素-β的转录。ZNF385A的敲除提高了内源性dsRNAs的水平,特别是与逆转录元件相关的转录本,如短散在核元件(SINE)、长散在核元件(LINE)和长末端重复序列(LTR)。此外,ZNF385A的缺失增强了5-氮杂-2'-脱氧胞苷(5-AZA-CdR)的生物活性和自然杀伤细胞的肿瘤杀伤作用。我们的发现极大地扩展了dsRBP库,并有助于理解细胞dsRNA稳态。