首页> 外文期刊>Archives of Biochemistry and Biophysics >Folding and assembly pathways of co-chaperonin proteins 10: Origin of bacterial thermostability.
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Folding and assembly pathways of co-chaperonin proteins 10: Origin of bacterial thermostability.

机译:伴侣蛋白的折叠和组装途径10:细菌热稳定性的起源。

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摘要

To compare folding/assembly processes of heptameric co-chaperonin proteins 10 (cpn10) from different species and search for the origin of thermostability in hyper-thermostable Aquifex aeolicus cpn10 (Aacpn10), we have studied two bacterial variants-Aacpn10 and Escherichia coli cpn10 (GroES)-and compared the results to data on Homo sapiens cpn10 (hmcpn10). Equilibrium denaturation of GroES by urea, guanidine hydrochloride (GuHCl) and temperature results in coupled heptamer-to-monomer transitions in all cases. This is similar to the behavior of Aacpn10 but differs from hmcpn10 denaturation in urea. Time-resolved experiments reveal that GroES unfolds before heptamer dissociation, whereas refolding/reassembly begins with folding of individual monomers; these assemble in a slower step. The sequential folding/assembly mechanism for GroES is rather similar to that observed for Aacpn10 but contradicts the parallel paths of hmcpn10. We reveal that Aacpn10's stability profile is shifted upwards, broadened, and also moved horizontally to higher temperatures, as compared to that of GroES.
机译:为了比较不同物种的七聚体陪伴蛋白10(cpn10)的折叠/组装过程并寻找超耐热Aquifex aeolicus cpn10(Aacpn10)的热稳定性起源,我们研究了两种细菌变体-Aacpn10和大肠杆菌cpn10( GroES),并将结果与​​智人cpn10(hmcpn10)上的数据进行比较。在所有情况下,尿素,盐酸胍(GuHCl)和温度对GroES的平衡变性都会导致七聚体到单体的偶合转变。这类似于Aacpn10的行为,但不同于尿素中的hmcpn10变性。时间分辨的实验表明,GroES在七聚体解离之前会展开,而重新折叠/重新组装则是从单个单体的折叠开始;它们以较慢的速度组装。 GroES的顺序折叠/组装机制与Aacpn10所观察到的相当相似,但与hmcpn10的平行路径相矛盾。我们发现,与GroES相比,Aacpn10的稳定性曲线向上移动,加宽并水平移动到更高的温度。

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