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Structural Basis for Modulation of Quality Control Fate in a Marginally Stable Protein

机译:调节边际稳定蛋白质质量控​​制命运的结构基础

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The human von Hippel-Lindau (VHL) tumor suppressor is a marginally stable protein previously used as a model substrate of eukaryotic refolding and degradation pathways. When expressed in the absence of its cofactors, VHL cannot fold and is quickly degraded by the quality control machinery of the cell. We combined computational methods with in vivo experiments to examine the basis of the misfolding propensity of VHL. By expressing a set of randomly mutated VHL sequences in yeast, we discovered a more stable mutant form. Subsequent modeling suggested the mutation had caused a conformational change affecting cofactor and chaperone interaction, and this hypothesis was then confirmed by additional knockout and overexpression experiments targeting a yeast cofactor homolog. These findings offer a detailed structural basis for the modulation of quality control fate in a model misfolded protein and highlight burial mode modeling as a rapid means to detect functionally important conformational changes in marginally stable globular domains.
机译:人von Hippel-Lindau(VHL)肿瘤抑制因子是一种边缘稳定的蛋白,以前被用作真核生物重折叠和降解途径的模型底物。当在没有其辅因子的情况下表达时,VHL无法折叠,并且会被细胞的质量控制机制迅速降解。我们将计算方法与体内实验相结合,以检查VHL的错误折叠倾向的基础。通过在酵母中表达一组随机突变的VHL序列,我们发现了更稳定的突变形式。随后的模型表明该突变已引起构象变化,从而影响辅因子和分子伴侣的相互作用,然后通过针对酵母辅因子同源物的其他敲除和过表达实验证实了这一假设。这些发现为模型错误折叠的蛋白质中质量控制命运的调节提供了详细的结构基础,并突出了掩埋模式建模,作为在边缘稳定球状结构域中检测功能上重要的构象变化的快速手段。

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