动力学和热力学研究表明趋化因子同源物CC11和CC24具有几乎相同的三级结构,但具有不同的折叠途径。

Q1 Biochemistry, Genetics and Molecular Biology BMC Biophysics Pub Date : 2017-09-12 eCollection Date: 2017-01-01 DOI:10.1186/s13628-017-0039-4
Baosheng Ge, Xiaoyong Jiang, Yao Chen, Tingting Sun, Qiuxia Yang, Fang Huang
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引用次数: 1

摘要

背景:序列同一性较低但三级结构和功能几乎相同的蛋白质在揭示序列、三级结构、折叠机制和功能之间的关系方面具有重要价值。同源趋化因子CCL11和CCL24序列同一性低,但三级结构和功能相似,为各自的研究提供了良好的模型体系。结果:对两种同源趋化因子的动力学和热力学进行了系统表征。CCL11和CCL24虽然三级结构相似,但在盐酸胍滴定中表现出不同的热力学稳定性,D50%分别为2.20 M和4.96 M。CCL11和CCL24的折叠/展开过程的动力学曲线显示出两个阶段,表明它们的折叠/展开过程存在中间状态。CCL11和CCL24的折叠途径可以用具有通路上折叠中间体的折叠模型很好地描述。但CCL11和CCL24中间态的折叠动力学和稳定性明显不同。结论:我们的研究结果表明,具有低序列同一性的同源蛋白可以表现出几乎相同的三级结构,但折叠机制却截然不同,这适用于趋化因子蛋白家族中的同源蛋白,扩展了上述观察结果的一般适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Kinetic and thermodynamic studies reveal chemokine homologues CC11 and CC24 with an almost identical tertiary structure have different folding pathways.

Background: Proteins with low sequence identity but almost identical tertiary structure and function have been valuable to uncover the relationship between sequence, tertiary structure, folding mechanism and functions. Two homologous chemokines, CCL11 and CCL24, with low sequence identity but similar tertiary structure and function, provide an excellent model system for respective studies.

Results: The kinetics and thermodynamics of the two homologous chemokines were systematically characterized. Despite their similar tertiary structures, CCL11 and CCL24 show different thermodynamic stability in guanidine hydrochloride titration, with D50% = 2.20 M and 4.96 M, respectively. The kinetics curves clearly show two phases in the folding/unfolding processes of both CCL11 and CCL24, which suggests the existence of an intermediate state in their folding/unfolding processes. The folding pathway of both CCL11 and CCL24 could be well described using a folding model with an on-pathway folding intermediate. However, the folding kinetics and stability of the intermediate state of CCL11 and CCL24 are obviously different.

Conclusion: Our results suggest homologous proteins with low sequence identity can display almost identical tertiary structure, but very different folding mechanisms, which applies to homologues in the chemokine protein family, extending the general applicability of the above observation.

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BMC Biophysics
BMC Biophysics BIOPHYSICS-
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