Lee Yun-Tzai Cloud, Hsu Shang-Te Danny
Institute of Biological Chemistry , Academia Sinica , Taipei 11529 , Taiwan.
Institute of Biochemical Sciences , National Taiwan University , Taipei 10617 , Taiwan.
J Phys Chem Lett. 2018 May 3;9(9):2433-2437. doi: 10.1021/acs.jpclett.8b00815. Epub 2018 Apr 25.
Oligomerization of misfolded protein species is implicated in many human disorders. Here we showed by size-exclusion chromatography-coupled multiangle light scattering (SEC-MALS) and small-angle X-ray scattering (SEC-SAXS) that urea-induced folding intermediate of human ubiquitin C-terminal hydrolase, UCH-L1, can form well-defined dimers and tetramers under denaturing conditions despite being highly disordered. Introduction of a Parkinson disease-associated mutation, I93M, resulted in increased aggregation propensity and formation of irreversible precipitants in the presence of a moderate amount of urea. Since UCH-L1 exhibits highly populated partially unfolded forms under native conditions that resemble urea-induced folding intermediates, it is likely that these metastable dimers and tetramers can form under physiological conditions. Our findings highlighted the unique strength of integrated SEC-MALS/SAXS in quantitative analyses of the structure and dynamics of oligomeric folding intermediates that enabled us to extract information that is inaccessible to conventional biophysical techniques.
错误折叠的蛋白质物种的寡聚化与许多人类疾病有关。在这里,我们通过尺寸排阻色谱-多角度光散射联用技术(SEC-MALS)和小角X射线散射技术(SEC-SAXS)表明,尽管人泛素C末端水解酶UCH-L1的尿素诱导折叠中间体高度无序,但在变性条件下仍能形成明确的二聚体和四聚体。引入帕金森病相关突变I93M,在适量尿素存在下会导致聚集倾向增加并形成不可逆沉淀物。由于UCH-L1在天然条件下表现出大量类似尿素诱导折叠中间体的部分未折叠形式,这些亚稳态二聚体和四聚体很可能在生理条件下形成。我们的研究结果突出了集成SEC-MALS/SAXS在寡聚折叠中间体结构和动力学定量分析方面的独特优势,使我们能够获取传统生物物理技术无法获得的信息。