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连接特异性泛素结合界面调节衣原体去泛素化酶 Cdu1 对多泛素底物的活性。

Linkage-specific ubiquitin binding interfaces modulate the activity of the chlamydial deubiquitinase Cdu1 towards poly-ubiquitin substrates.

机构信息

Institute for Structural Biology, Rudolf-Virchow-Zentrum-Center for Integrative and Translational Bioimaging, University of Würzburg, Würzburg, Germany.

Institute of Biophysics and Physical Biochemistry, University of Regensburg, Regensburg, Germany.

出版信息

PLoS Pathog. 2024 Oct 21;20(10):e1012630. doi: 10.1371/journal.ppat.1012630. eCollection 2024 Oct.

Abstract

The chlamydial deubiquitinase Cdu1 of the obligate intracellular human pathogenic bacterium Chlamydia trachomatis plays important roles in the maintenance of chlamydial infection. Despite the structural similarities shared with its homologue Cdu2, both DUBs display remarkable differences in their enzymatic activity towards poly-UB chain substrates. Whereas Cdu1 is highly active towards K48- and K63- poly-UB chains, Cdu2 activity is restricted mostly to mono-UB substrates. Here, we shed light on the molecular mechanisms of the differential activity and the substrate specificity of Cdu1 to better understand the cellular processes it is involved in, including infection-related events. We found that the strikingly elevated activity of Cdu1 relative to its paralogue Cdu2 can be attributed to an N-terminally extended α-helix, which has not been observed in Cdu2. Moreover, by employing isothermal titration calorimetry and nuclear magnetic resonance spectroscopy, we demonstrate the differential recognition of K48- and K63-linked poly-UB substrates by Cdu1. Whereas K63-linked poly-UB substrates appear to be recognized by Cdu1 with only two independent ubiquitin interaction sites, up to four different binding interfaces are present for K48-linked ubiquitin chains. Combined, our data suggest that Cdu1 possesses a poly-UB chain directed activity that may enable its function as a multipurpose DUB with a broad substrate specificity.

摘要

沙眼衣原体的必需的细胞内人病原细菌的衣原体去泛素化酶 Cdu1 在维持衣原感染中起着重要作用。尽管与同源物 Cdu2 具有结构相似性,但这两种 DUB 在其对多泛素链底物的酶活性方面表现出显著差异。虽然 Cdu1 对 K48- 和 K63-多泛素链具有高度活性,但 Cdu2 的活性主要局限于单泛素底物。在这里,我们揭示了 Cdu1 的差异活性和底物特异性的分子机制,以更好地理解它所涉及的细胞过程,包括与感染相关的事件。我们发现,Cdu1 相对于其同源物 Cdu2 的显著高活性可归因于一个 N 端延伸的α-螺旋,而 Cdu2 中未观察到该螺旋。此外,通过使用等温滴定量热法和核磁共振波谱法,我们证明了 Cdu1 对 K48- 和 K63-连接的多泛素底物的差异识别。虽然 K63 连接的多泛素底物似乎仅通过两个独立的泛素相互作用位点被 Cdu1 识别,但 K48 连接的泛素链存在多达四个不同的结合界面。综合起来,我们的数据表明,Cdu1 具有多泛素链导向的活性,这可能使其能够作为具有广泛底物特异性的多功能 DUB 发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/263f/11527256/5a517faf5632/ppat.1012630.g001.jpg

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