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The structure of the deubiquitinase USP15 reveals a misaligned catalytic triad and an open ubiquitin-binding channel

机译:去泛素酶USP15的结构揭示了一个未对准的催化三联体和一个开放的泛素结合通道

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摘要

Ubiquitin-specific protease 15 (USP15) regulates important cellular processes, including transforming growth factor β (TGF-β) signaling, mitophagy, mRNA processing, and innate immune responses; however, structural information on USP15's catalytic domain is currently unavailable. Here, we determined crystal structures of the USP15 catalytic core domain, revealing a canonical USP fold, including a finger, palm, and thumb region. Unlike for the structure of paralog USP4, the catalytic triad is in an inactive configuration with the catalytic cysteine ∼10 Å apart from the catalytic histidine. This conformation is atypical, and a similar misaligned catalytic triad has so far been observed only for USP7, although USP15 and USP7 are differently regulated. Moreover, we found that the active-site loops are flexible, resulting in a largely open ubiquitin tail–binding channel. Comparison of the USP15 and USP4 structures points to a possible activation mechanism. Sequence differences between these two USPs mainly map to the S1′ region likely to confer specificity, whereas the S1 ubiquitin–binding pocket is highly conserved. Isothermal titration calorimetry monoubiquitin- and linear diubiquitin-binding experiments showed significant differences in their thermodynamic profiles, with USP15 displaying a lower affinity for monoubiquitin than USP4. Moreover, we report that USP15 is weakly inhibited by the antineoplastic agent mitoxantrone in vitro. A USP15–mitoxantrone complex structure disclosed that the anthracenedione interacts with the S1′ binding site. Our results reveal first insights into USP15's catalytic domain structure, conformational changes, differences between paralogs, and small-molecule interactions and establish a framework for cellular probe and inhibitor development.
机译:泛素特异性蛋白酶15(USP15)调节重要的细胞过程,包括转化生长因子β(TGF-β)信号传导,线粒体,mRNA加工和先天性免疫应答。但是,有关USP15催化结构域的结构信息目前尚不可用。在这里,我们确定了USP15催化核心结构域的晶体结构,揭示了规范的USP折叠,包括手指,手掌和拇指区域。与顺式USP4的结构不同,催化三联体处于非活性构型,催化半胱氨酸与催化组氨酸间隔约10Å。这种构象是非典型的,尽管USP15和USP7的调控不同,但迄今为止仅USP7观察到了类似的错位催化三联体。此外,我们发现活动位点的回路很灵活,从而导致泛素尾巴结合通道大大开放。 USP15和USP4结构的比较指出了可能的激活机制。这两个USP之间的序列差异主要定位于可能赋予特异性的S1'区,而S1泛素结合袋则高度保守。等温滴定量热法测定单泛素结合和线性二泛素结合实验表明它们的热力学特性存在显着差异,其中USP15对单泛素的亲和力低于USP4。此外,我们报告说USP15在体外被抗肿瘤药米托蒽醌微弱地抑制。 USP15-米托蒽醌复合物结构显示,蒽二酮与S1'结合位点相互作用。我们的结果揭示了对USP15催化结构域结构,构象变化,旁系同源物之间的差异以及小分子相互作用的初步见解,并为细胞探针和抑制剂的开发建立了框架。

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