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Flexible interwoven termini determine the thermal stability of thermosomes

机译:柔性交织的末端决定了保温瓶的热稳定性

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摘要

Group II chaperonins, which assemble as double-ring complexes, assist in the refolding of nascent peptides or denatured proteins in an ATP-dependent manner. The molecular mechanism of group II chaperonin assembly and thermal stability is yet to be elucidated. Here, we selected the group II chaperonins (cpn-α and cpn-β), also called thermosomes, from Acidianus tengchongensis and investigated their assembly and thermal stability. We found that the binding of ATP or its analogs contributed to the successful assembly of thermosomes and enhanced their thermal stabilities. Cpn-β is more thermally stable than cpn-α, while the thermal stability of the hetero thermosome cpn-αβ is intermediate. Cryo-electron microscopy reconstructions of cpn-α and cpn-β revealed the interwoven densities of their non-conserved flexible N/C-termini around the equatorial planes. The deletion or swapping of their termini and pH-dependent thermal stability assays revealed the key role of the termini electrostatic interactions in the assembly and thermal stability of the thermosomes.Electronic Supplementary MaterialSupplementary material is available for this article at 10.1007/s13238-013-3026-9 and is accessible for authorized users.
机译:II组伴侣蛋白组装成双环复合物,以ATP依赖性方式协助新生肽或变性蛋白的重新折叠。 II组分子伴侣组装和热稳定性的分子机制尚待阐明。在这里,我们从腾冲酸Acid中选择了第二类伴侣蛋白(cpn-α和cpn-β),也称为恒温小体,并研究了它们的组装和热稳定性。我们发现,ATP或其类似物的结合有助于热体的成功组装并增强了其热稳定性。 Cpn-β比cpn-α具有更高的热稳定性,而异质体cpn-αβ的热稳定性处于中等水平。 cpn-α和cpn-β的低温电子显微镜重建显示了它们在赤道平面周围非保守的柔性N / C末端的交织密度。它们末端和pH依赖的热稳定性测定法的删除或交换揭示了末端静电相互作用在热体的组装和热稳定性中的关键作用。电子补充材料本文提供的补充材料为10.1007 / s13238-013-3026 -9,可供授权用户访问。

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