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Formation of High-Order Oligomers by a Hyperthemostable Fe-Superoxide Dismutase (tcSOD)

机译:通过超热铁超氧化物歧化酶(tcSOD)形成高阶低聚物

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摘要

Hyperthermostable proteins are highly resistant to various extreme conditions. Many factors have been proposed to contribute to their ultrahigh structural stability. Some thermostable proteins have larger oligomeric size when compared to their mesophilic homologues. The formation of compact oligomers can minimize the solvent accessible surface area and increase the changes of Gibbs free energy for unfolding. Similar to mesophilic proteins, hyperthermostable proteins also face the problem of unproductive aggregation. In this research, we investigated the role of high-order oligomerization in the fight against aggregation by a hyperthermostable superoxide dismutase identified from Tengchong, China (tcSOD). Besides the predominant tetramers, tcSOD could also form active high-order oligomers containing at least eight subunits. The dynamic equilibrium between tetramers and high-order oligomers was not significantly affected by pH, salt concentration or moderate temperature. The secondary and tertiary structures of tcSOD remained unchanged during heating, while cross-linking experiments showed that there were conformational changes or structural fluctuations at high temperatures. Mutational analysis indicated that the last helix at the C-terminus was involved in the formation of high-order oligomers, probably via domain swapping. Based on these results, we proposed that the reversible conversion between the active tetramers and high-order oligomers might provide a buffering system for tcSOD to fight against the irreversible protein aggregation pathway. The formation of active high-order oligomers not only increases the energy barrier between the native state and unfolded/aggregated state, but also provides the enzyme the ability to reproduce the predominant oligomers from the active high-order oligomers.
机译:热稳定蛋白对各种极端条件具有高度抗性。已经提出了许多因素来促进它们的超高结构稳定性。与嗜温同源物相比,某些热稳定蛋白的寡聚体尺寸更大。致密低聚物的形成可以使溶剂可及的表面积最小化,并增加吉布斯自由能的变化以展开。与嗜温蛋白相似,超耐热蛋白也面临着非生产性聚集的问题。在这项研究中,我们调查了从中国腾冲(tcSOD)鉴定出的超热超氧化物歧化酶对高阶寡聚在对抗聚集中的作用。除主要的四聚体外,tcSOD还可以形成含有至少八个亚基的活性高阶低聚物。 pH,盐浓度或中等温度对四聚体和高阶低聚物之间的动态平衡没有显着影响。 tcSOD的二级和三级结构在加热过程中保持不变,而交联实验表明在高温下存在构象变化或结构波动。突变分析表明,C末端的最后一个螺旋可能通过域交换参与了高阶寡聚物的形成。基于这些结果,我们提出活性四聚体和高阶低聚物之间的可逆转化可能为tcSOD提供一个缓冲系统,以对抗不可逆的蛋白质聚集途径。活性高阶低聚物的形成不仅增加了天然状态与未折叠/聚集状态之间的能垒,而且还为酶提供了从活性高阶低聚物再生主要低聚物的能力。

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