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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Dna Energy Landscapes Via Calorimetric Detection Of Microstate Ensembles Of Metastable Macrostates And Triplet Repeat Diseases
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Dna Energy Landscapes Via Calorimetric Detection Of Microstate Ensembles Of Metastable Macrostates And Triplet Repeat Diseases

机译:通过量热检测亚稳态大分子态和三重态重复​​疾病的微状态集合的Dna能量景观

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摘要

Biopolymers exhibit rough energy landscapes, thereby allowing biological processes to access a broad range of kinetic and ther-modynamic states. In contrast to proteins, the energy landscapes of nucleic acids have been the subject of relatively few experimental investigations. In this study, we use calorimetric and spectro-scopic observables to detect, resolve, and selectively enrich energetically discrete ensembles of microstates within metastable DNA structures. Our results are consistent with metastable, "native" DNA states being composed of an ensemble of discrete and kinetically stable microstates of differential stabilities, rather than exclusively being a single, discrete thermodynamic species. This conceptual construct is important for understanding the linkage between biopolymer conformational/configurational space and biological function, such as in protein folding, allosteric control of enzyme activity, RNA and DNA folding and function, DNA structure and biological regulation, etc. For the specific DNA sequences and structures studied here, the demonstration of discrete, kinetically stable microstates potentially has biological consequences for understanding the development and onset of DNA expansion and triplet repeat diseases.
机译:生物聚合物表现出粗糙的能量格局,从而使生物过程可以进入广泛的动力学和热力学状态。与蛋白质相反,核酸的能量格局一直是相对较少的实验研究的主题。在这项研究中,我们使用量热法和分光镜下的可观察物来检测,分辨和选择性富集亚稳态DNA结构内微状态的能量离散集合。我们的结果与亚稳态的“天然” DNA状态由不同稳定性的离散和动力学稳定的微状态集合组成,而不是仅是单个离散的热力学物种一致。这种概念上的构建对于理解生物聚合物构象/构型空间与生物学功能之间的联系非常重要,例如蛋白质折叠,酶活性的变构控制,RNA和DNA折叠与功能,DNA结构和生物学调控等。对于特定的DNA在这里研究的序列和结构中,离散的,动力学上稳定的微状态的演示对于理解DNA扩增和三联体重复疾病的发展和发作可能具有生物学上的后果。

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