State Key Laboratory and Institute of Elemento-Organic Chemistry, College of Chemistry, Nankai University, Tianjin 300071, China.
Collaborative Innovation Center of Chemical Science and Engineering, Nankai University, Tianjin 300071, China.
Molecules. 2021 Oct 29;26(21):6546. doi: 10.3390/molecules26216546.
Although metal cations are prevalent in biological media, the species of multi-metal cationized biomolecules have received little attention so far. Studying these complexes in isolated state is important, since it provides intrinsic information about the interaction among them on the molecular level. Our investigation here demonstrates the unexpected structural diversity of such species generated by a matrix-assisted laser desorption ionization (MALDI) source in the gas phase. The photodissociation spectroscopic and theoretical study reflects that the co-existing isomers of [Arg+Rb+K-H] can have energies ≥95 kJ/mol higher than that of the most stable one. While the result can be rationalized by the great isomerization energy barrier due to the coordination, it strongly reminds us to pay more attention to their structural diversities for multi-metalized fundamental biological molecules, especially for the ones with the ubiquitous alkali metal ions.
尽管金属阳离子在生物介质中很常见,但目前对多金属阳离子化生物分子的物种还关注甚少。在分离状态下研究这些配合物很重要,因为它可以提供分子水平上它们之间相互作用的内在信息。我们在这里的研究表明,在气相中,基质辅助激光解吸电离(MALDI)源会产生意想不到的这类物种的结构多样性。光解离光谱和理论研究表明,[Arg+Rb+K-H]+共存异构体的能量可以比最稳定的异构体高≥95kJ/mol。虽然由于配位作用,巨大的异构化能垒可以解释这一结果,但它强烈提醒我们要更加注意多金属化基本生物分子的结构多样性,特别是对于那些普遍存在的碱金属离子的分子。