论文标题

糖蛋白质量控制途径的设计原理

Design principles for the glycoprotein quality control pathway

论文作者

Brown, Aidan I, Koslover, Elena F

论文摘要

内质网(ER)中新翻译的糖蛋白经常经历伴侣结合和释放的周期,以帮助折叠。需要质量控制以区分已经完成本机折叠的蛋白质,尚未折叠的蛋白质以及那些折叠倍数的蛋白质。使用定量建模,我们探讨了质量控制途径的设计如何调节其效率。我们的结果表明,类似于观察到的生理系统的能量消耗的循环质量控制过程优于替代设计。优化该系统性能的动力学参数会随蛋白质的产生水平发生巨大变化,同时对蛋白质折叠率相对不敏感。仅调节降解速率,同时固定其他参数,可以使途径适应一系列蛋白质生产水平,与体内测量值保持一致,这意味着将降解相关的酶释放为蛋白质稳态中扰动的快速反应系统。这里开发的定量模型阐明了ER中有效糖蛋白质量控制的设计原理,从而提高了我们对维持细胞健康至关重要的系统的机械理解。

Newly-translated glycoproteins in the endoplasmic reticulum (ER) often undergo cycles of chaperone binding and release in order to assist in folding. Quality control is required to distinguish between proteins that have completed native folding, those that have yet to fold, and those that have misfolded. Using quantitative modeling, we explore how the design of the quality-control pathway modulates its efficiency. Our results show that an energy-consuming cyclic quality-control process, similar to the observed physiological system, outperforms alternative designs. The kinetic parameters that optimize the performance of this system drastically change with protein production levels, while remaining relatively insensitive to the protein folding rate. Adjusting only the degradation rate, while fixing other parameters, allows the pathway to adapt across a range of protein production levels, aligning with in vivo measurements that implicate the release of degradation-associated enzymes as a rapid-response system for perturbations in protein homeostasis. The quantitative models developed here elucidate design principles for effective glycoprotein quality control in the ER, improving our mechanistic understanding of a system crucial to maintaining cellular health.

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