Nkyaagye Emmanuel, Limbach Miranda N, Do Thanh D
Department of Chemistry, University of Tennessee, Knoxville, Tennessee 37996, United States.
J Phys Chem B. 2024 Feb 8;128(5):1209-1219. doi: 10.1021/acs.jpcb.3c08385. Epub 2024 Jan 31.
Beauvericin (BEA) and enniatins (ENN) are cyclic hexadepsipeptide mycotoxins known for their ionophoric activities across cell membranes. While their ability to selectively bind alkali ions to form binary complexes has been studied, their interaction with multivalent metal ions to form higher-order complexes remains less explored. We report the unique characteristics of the 1:2, M:BEA or ENN complexes with monovalent, divalent, and trivalent metal ions. A thorough IMS-MS analysis underscores the substantial interplay among ionic radii, coordination numbers, and their impact on conformational selection within higher-order complexes that is pertinent to ion transport. Transition metals offer insights into the effects of ion radii and ligand side chains on conformational selection, while lanthanide complexes enable a direct evaluation of coordination chemistry. An intriguing finding concerning the lanthanide complexes involves an unexpected C-H bond activation, wherein water ligands may catalyze the deprotonation of the cyclic peptides.
白僵菌素(BEA)和恩镰孢菌素(ENN)是环状六元缩肽霉菌毒素,以其跨细胞膜的离子载体活性而闻名。虽然它们选择性结合碱金属离子形成二元络合物的能力已得到研究,但它们与多价金属离子形成高阶络合物的相互作用仍较少被探索。我们报道了1:2的M:BEA或ENN与单价、二价和三价金属离子络合物的独特特性。全面的离子淌度质谱分析强调了离子半径、配位数之间的实质性相互作用,以及它们对与离子运输相关的高阶络合物内构象选择的影响。过渡金属为离子半径和配体侧链对构象选择的影响提供了见解,而镧系元素络合物则能够直接评估配位化学。关于镧系元素络合物的一个有趣发现涉及意外的C-H键活化,其中水配体可能催化环肽的去质子化。