Suppr超能文献

从生物学角度看卤键和其他非经典非共价相互作用。

A Biological Take on Halogen Bonding and Other Non-Classical Non-Covalent Interactions.

机构信息

Department of Biochemistry & Molecular Biology, Colorado State University, Fort Collins, CO, 80523-1870, USA.

出版信息

Chem Rec. 2021 May;21(5):1240-1251. doi: 10.1002/tcr.202100076. Epub 2021 Apr 22.

Abstract

Classical hydrogen bonds have, for many decades, been the dominant non-covalent interaction in the toolbox that chemists and chemical engineers have used to design and control the structures of compounds and molecular assemblies as novel materials. Recently, a set of non-classical non-covalent (NC-NC) interactions have emerged that exploit the properties of the Group IV, V, VI, and VII elements of the periodic table (the tetrel, pnictogen, chalcogen, and halogen bonds, respectively). Our research group has been characterizing the prevalence, geometric constraints, and structure-function relationship specifically of the halogen bond in biological systems. We have been particularly interested in exploiting the biological halogen bonds (or BXBs) to control the structures, stabilities, and activities of biomolecules, including the DNA Holliday junction and enzymes. In this review, we first provide a set of criteria for how to determine whether BXBs or any other NC-NC interactions would have biological relevance. We then navigate the trail of studies that had led us from an initial, very biological question to our current point in the journey to establish BXBs as a tool for biomolecular engineering. Finally, we close with a perspective on future directions for this line of research.

摘要

几十年来,经典氢键一直是化学家及化学工程师用于设计和控制化合物及分子组装体结构的工具包中的主要非共价相互作用,以作为新型材料。最近,出现了一组非经典非共价(NC-NC)相互作用,它们利用了元素周期表中第 IV、V、VI 和 VII 族元素(分别为四卤键、磷卤键、硫卤键和卤键)的特性。我们的研究小组一直在对生物系统中非经典氢键的普遍性、几何限制和结构-功能关系进行研究。我们特别感兴趣的是利用生物卤键(或 BXBs)来控制生物分子的结构、稳定性和活性,包括 DNA 霍利迪连接点和酶。在这篇综述中,我们首先提供了一组标准,用于确定 BXBs 或任何其他 NC-NC 相互作用是否具有生物学相关性。然后,我们沿着研究轨迹,从最初的非常具有生物学意义的问题出发,一直到我们目前的研究阶段,旨在将 BXBs 确立为生物分子工程的工具。最后,我们对这一研究方向的未来方向进行了展望。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验