Molecular Biology Institute, University of California, Los Angeles, California, United States of America.
Department of Microbiology, Immunology and Molecular Genetics, University of California, Los Angeles, California, United States of America.
PLoS Pathog. 2022 Sep 6;18(9):e1010743. doi: 10.1371/journal.ppat.1010743. eCollection 2022 Sep.
The tripartite motif (TRIM) family of E3 ubiquitin ligases is well known for its roles in antiviral restriction and innate immunity regulation, in addition to many other cellular pathways. In particular, TRIM25-mediated ubiquitination affects both carcinogenesis and antiviral response. While individual substrates have been identified for TRIM25, it remains unclear how it regulates diverse processes. Here we characterized a mutation, R54P, critical for TRIM25 catalytic activity, which we successfully utilized to "trap" substrates. We demonstrated that TRIM25 targets proteins implicated in stress granule formation (G3BP1/2), nonsense-mediated mRNA decay (UPF1), nucleoside synthesis (NME1), and mRNA translation and stability (PABPC4). The R54P mutation abolishes TRIM25 inhibition of alphaviruses independently of the host interferon response, suggesting that this antiviral effect is a direct consequence of ubiquitination. Consistent with that, we observed diminished antiviral activity upon knockdown of several TRIM25-R54P specific interactors including NME1 and PABPC4. Our findings highlight that multiple substrates mediate the cellular and antiviral activities of TRIM25, illustrating the multi-faceted role of this ubiquitination network in modulating diverse biological processes.
三结构域蛋白(TRIM)家族的 E3 泛素连接酶,除了在许多其他细胞途径中发挥作用外,还因其在抗病毒限制和先天免疫调节中的作用而闻名。特别是,TRIM25 介导的泛素化作用影响致癌作用和抗病毒反应。虽然已经确定了 TRIM25 的个别底物,但它如何调节多种过程仍不清楚。在这里,我们描述了一个关键的突变,R54P,对 TRIM25 的催化活性至关重要,我们成功地利用它“捕获”了底物。我们证明 TRIM25 靶向与应激颗粒形成(G3BP1/2)、无意义介导的 mRNA 衰变(UPF1)、核苷合成(NME1)以及 mRNA 翻译和稳定性(PABPC4)相关的蛋白质。R54P 突变独立于宿主干扰素反应,消除了 TRIM25 对甲病毒的抑制作用,这表明这种抗病毒作用是泛素化的直接结果。与此一致,我们观察到几种 TRIM25-R54P 特异性相互作用物(包括 NME1 和 PABPC4)的敲低后,抗病毒活性降低。我们的研究结果强调了多个底物介导了 TRIM25 的细胞和抗病毒活性,说明了这个泛素化网络在调节多种生物学过程中的多方面作用。