Iwahara Junji
Department of Biochemistry & Molecular Biology, Sealy Center for Structural Biology & Molecular Biophysics, University of Texas Medical Branch, Galveston, TX 77555-1068, USA.
J Mol Biol. 2025 Jun 6:169285. doi: 10.1016/j.jmb.2025.169285.
Counterions play a crucial role in biomolecular systems, influencing the structure and function of proteins and nucleic acids. Most counterions are not visible in experimentally determined biomolecular structures because the ions dynamically diffuse even while interacting with biomolecules. Over the past five decades, researchers have utilized Na NMR to study sodium ions and their electrostatic interactions with biomolecules. Other inorganic ions as counterions of biomolecules have also been studied with Mg, P, Cl, and K NMR, for example. However, investigating the dynamic properties of ions around biomolecules using NMR has been challenging. Recently, there have been significant advances in NMR studies on the behavior of various biologically relevant ions around proteins and nucleic acids. Advances in probe hardware capable of generating strong field gradients have enabled NMR-based diffusion measurements of various inorganic ions interacting with biomolecules. The diffusion data have revealed the highly mobile nature of counterions around biomolecules and quantitative information about the release of counterions upon protein-DNA association. Quantitative NMR (qNMR) approaches have been developed to determine the number of counterions accumulated around a biomolecule. Applications of the diffusion and qNMR methods appear promising since the feasibility of ion NMR has already been demonstrated for large biomolecule systems, such as ribosomes, genomic DNA, biomolecular condensates, and living organisms.
抗衡离子在生物分子系统中起着至关重要的作用,影响着蛋白质和核酸的结构与功能。在实验测定的生物分子结构中,大多数抗衡离子是不可见的,因为即使在与生物分子相互作用时,离子也会动态扩散。在过去的五十年里,研究人员利用钠核磁共振(Na NMR)来研究钠离子及其与生物分子的静电相互作用。例如,其他作为生物分子抗衡离子的无机离子也通过镁、磷、氯和钾核磁共振进行了研究。然而,利用核磁共振研究生物分子周围离子的动态性质一直具有挑战性。最近,在核磁共振研究蛋白质和核酸周围各种生物相关离子的行为方面取得了重大进展。能够产生强场梯度的探针硬件的进步使得基于核磁共振的各种与生物分子相互作用的无机离子的扩散测量成为可能。扩散数据揭示了生物分子周围抗衡离子的高度流动性以及蛋白质 - DNA 结合时抗衡离子释放的定量信息。已经开发了定量核磁共振(qNMR)方法来确定生物分子周围积累的抗衡离子数量。由于离子核磁共振的可行性已经在大型生物分子系统(如核糖体、基因组 DNA、生物分子凝聚物和活生物体)中得到证明,扩散和 qNMR 方法的应用似乎很有前景。