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蛋白质中非常规非共价相互作用的领域:它们在结构和功能中的意义。

The Realm of Unconventional Noncovalent Interactions in Proteins: Their Significance in Structure and Function.

作者信息

Adhav Vishal Annasaheb, Saikrishnan Kayarat

机构信息

Department of Biology, Indian Institute of Science Education and Research, Pune 411008, India.

出版信息

ACS Omega. 2023 Jun 13;8(25):22268-22284. doi: 10.1021/acsomega.3c00205. eCollection 2023 Jun 27.

Abstract

Proteins and their assemblies are fundamental for living cells to function. Their complex three-dimensional architecture and its stability are attributed to the combined effect of various noncovalent interactions. It is critical to scrutinize these noncovalent interactions to understand their role in the energy landscape in folding, catalysis, and molecular recognition. This Review presents a comprehensive summary of unconventional noncovalent interactions, beyond conventional hydrogen bonds and hydrophobic interactions, which have gained prominence over the past decade. The noncovalent interactions discussed include low-barrier hydrogen bonds, C5 hydrogen bonds, C-H···π interactions, sulfur-mediated hydrogen bonds, n → π* interactions, London dispersion interactions, halogen bonds, chalcogen bonds, and tetrel bonds. This Review focuses on their chemical nature, interaction strength, and geometrical parameters obtained from X-ray crystallography, spectroscopy, bioinformatics, and computational chemistry. Also highlighted are their occurrence in proteins or their complexes and recent advances made toward understanding their role in biomolecular structure and function. Probing the chemical diversity of these interactions, we determined that the variable frequency of occurrence in proteins and the ability to synergize with one another are important not only for ab initio structure prediction but also to design proteins with new functionalities. A better understanding of these interactions will promote their utilization in designing and engineering ligands with potential therapeutic value.

摘要

蛋白质及其组装体是活细胞发挥功能的基础。它们复杂的三维结构及其稳定性归因于各种非共价相互作用的综合效应。仔细研究这些非共价相互作用对于理解它们在折叠、催化和分子识别的能量景观中的作用至关重要。本综述全面总结了非常规非共价相互作用,这些相互作用超越了传统的氢键和疏水相互作用,在过去十年中受到了广泛关注。所讨论的非共价相互作用包括低势垒氢键、C5氢键、C-H···π相互作用、硫介导的氢键、n → π*相互作用、伦敦色散相互作用、卤键、硫族元素键和碳族元素键。本综述重点关注它们的化学性质、相互作用强度以及从X射线晶体学、光谱学、生物信息学和计算化学中获得的几何参数。还强调了它们在蛋白质或其复合物中的出现情况以及在理解它们在生物分子结构和功能中的作用方面取得的最新进展。通过探究这些相互作用的化学多样性,我们确定它们在蛋白质中出现的可变频率以及彼此协同的能力不仅对于从头结构预测很重要,而且对于设计具有新功能的蛋白质也很重要。更好地理解这些相互作用将促进它们在设计和工程具有潜在治疗价值的配体中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/825b/10308531/dd6c9c89d823/ao3c00205_0001.jpg

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