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高温和非高温蛋白质的序列和结构的统计分析。

A Statistical Analysis of the Sequence and Structure of Thermophilic and Non-Thermophilic Proteins.

机构信息

School of Life Science and Technology, Center for Informational Biology, University of Electronic Science and Technology of China, Chengdu 610054, China.

出版信息

Int J Mol Sci. 2022 Sep 4;23(17):10116. doi: 10.3390/ijms231710116.

Abstract

Thermophilic proteins have various practical applications in theoretical research and in industry. In recent years, the demand for thermophilic proteins on an industrial scale has been increasing; therefore, the engineering of thermophilic proteins has become a hot direction in the field of protein engineering. However, the exact mechanism of thermostability of proteins is not yet known, for engineering thermophilic proteins knowing the basis of thermostability is necessary. In order to understand the basis of the thermostability in proteins, we have made a statistical analysis of the sequences, secondary structures, hydrogen bonds, salt bridges, DHA (Donor-Hydrogen-Accepter) angles, and bond lengths of ten pairs of thermophilic proteins and their non-thermophilic orthologous. Our findings suggest that polar amino acids contribute to thermostability in proteins by forming hydrogen bonds and salt bridges which provide resistance against protein denaturation. Short bond length and a wider DHA angle provide greater bond stability in thermophilic proteins. Moreover, the increased frequency of aromatic amino acids in thermophilic proteins contributes to thermal stability by forming more aromatic interactions. Additionally, the coil, helix, and loop in the secondary structure also contribute to thermostability.

摘要

嗜热蛋白在理论研究和工业中具有各种实际应用。近年来,工业规模对嗜热蛋白的需求不断增加;因此,嗜热蛋白的工程已成为蛋白质工程领域的一个热门方向。然而,蛋白质热稳定性的确切机制尚不清楚,因为工程嗜热蛋白需要了解热稳定性的基础。为了了解蛋白质热稳定性的基础,我们对十对嗜热蛋白及其非嗜热直系同源物的序列、二级结构、氢键、盐桥、DHA(供体-氢键-受体)角和键长进行了统计分析。我们的研究结果表明,极性氨基酸通过形成氢键和盐桥来提高蛋白质的热稳定性,从而抵抗蛋白质变性。短键长和更宽的 DHA 角为嗜热蛋白提供了更大的键稳定性。此外,嗜热蛋白中芳香族氨基酸的频率增加通过形成更多的芳香族相互作用有助于热稳定性。此外,二级结构中的螺旋、折叠和环也有助于提高稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b00f/9456548/3d6f38e9004b/ijms-23-10116-g001.jpg

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