Department of Pharmaceutical Chemistry, University of California San Francisco, San Francisco, CA, USA.
Institute for Neurodegenerative Disease, University of California San Francisco, San Francisco, CA, USA.
Nat Commun. 2022 Mar 9;13(1):1226. doi: 10.1038/s41467-022-28864-x.
The 20S proteasome (20S) facilitates turnover of most eukaryotic proteins. Substrate entry into the 20S first requires opening of gating loops through binding of HbYX motifs that are present at the C-termini of certain proteasome activators (PAs). The HbYX motif has been predominantly characterized in the archaeal 20S, whereas little is known about the sequence preferences of the human 20S (h20S). Here, we synthesize and screen ~120 HbYX-like peptides, revealing unexpected differences from the archaeal system and defining the h20S recognition sequence as the Y-F/Y (YФ) motif. To gain further insight, we create a functional chimera of the optimized sequence, NLSYYT, fused to the model activator, PA26. A cryo-EM structure of PA26-h20S is used to identify key interactions, including non-canonical contacts and gate-opening mechanisms. Finally, we demonstrate that the YФ sequence preferences are tuned by valency, allowing multivalent PAs to sample greater sequence space. These results expand the model for termini-mediated gating and provide a template for the design of h20S activators.
20S 蛋白酶体 (20S) 促进大多数真核生物蛋白质的周转。底物进入 20S 首先需要通过结合存在于某些蛋白酶体激活剂 (PA) C 末端的 HbYX 基序打开门控环。HbYX 基序主要在古细菌 20S 中得到了表征,而关于人 20S (h20S) 的序列偏好知之甚少。在这里,我们合成并筛选了大约 120 个 HbYX 样肽,揭示了与古细菌系统的意外差异,并将 h20S 识别序列定义为 Y-F/Y (YФ) 基序。为了进一步深入了解,我们创建了优化序列 NLSYYT 的功能性嵌合体,与模型激活剂 PA26 融合。使用 PA26-h20S 的冷冻电镜结构来识别关键相互作用,包括非典型接触和门控开启机制。最后,我们证明了 YФ 序列偏好受价数的调节,允许多价 PA 采样更大的序列空间。这些结果扩展了末端介导门控的模型,并为 h20S 激活剂的设计提供了模板。