Vo Kien X, Hirata Keisuke, Lisy James M, Fujii Masaaki, Ishiuchi Shun-Ichi
School of Life Science and Technology, Tokyo Institute of Technology, 4259 Nagatsuta-cho, Midori-ku, Yokohama, Kanagawa 226-8503, Japan.
Department of Chemistry, School of Science, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8550, Japan.
J Phys Chem A. 2024 Oct 24;128(42):9159-9166. doi: 10.1021/acs.jpca.4c04515. Epub 2024 Oct 15.
Beauvericin (Bv) is a natural ionophore capable of transporting ions across biological membranes. Mass spectrometry and infrared spectroscopy show that Bv specifically captures sodium ions with a unique 6-fold coordination in its cavity, which illustrates how ions are carried through the membrane. But with no reports on how ions are released from Bv at the interface, a complete picture of the ion transport process has yet to be established. In this study, conformational changes of Bv complexes with alkali metal ions upon hydration were investigated using infrared spectroscopy and computational calculations. The addition of a single water molecule to NaBv pries the ion away from the 6-fold cavity to the amide face of the ionophore, evidence of the first step of ion release. In contrast, there is little impact on the other MBv complexes, with the ion bound to the three carbonyl groups on the amide face. Analysis of the carbonyl C═O and water OH stretching modes reveals the competition between ion-ionophore, ion-water, and water-ionophore interactions and demonstrates how water actively participates in ion transport by initiating ion release from the ionophore.
白僵菌素(Bv)是一种能够跨生物膜转运离子的天然离子载体。质谱和红外光谱表明,Bv在其腔内以独特的六重配位特异性捕获钠离子,这说明了离子是如何通过膜进行运输的。但由于尚无关于离子在界面处如何从Bv释放的报道,离子运输过程的完整图景尚未建立。在本研究中,利用红外光谱和计算计算研究了Bv与碱金属离子形成的配合物在水合作用下的构象变化。向NaBv中添加单个水分子会使离子从六重腔中脱离,转移到离子载体的酰胺面上,这是离子释放第一步的证据。相比之下,对其他MBv配合物几乎没有影响,离子与酰胺面上的三个羰基结合。对羰基C═O和水OH伸缩模式的分析揭示了离子-离子载体、离子-水和水-离子载体相互作用之间的竞争,并证明了水如何通过引发离子从离子载体中释放而积极参与离子运输。