Université de Nantes, CNRS, CEISAM UMR 6230, F-44000 Nantes, France.
IMT Atlantique, CNRS, SUBATECH UMR 6457, F-44307 Nantes, France.
Inorg Chem. 2020 Oct 5;59(19):13923-13932. doi: 10.1021/acs.inorgchem.0c01553. Epub 2020 Sep 22.
The affinity of AtO for around 20 model ligands (L), carrying functionalized oxygen, sulfur, and nitrogen atoms, has been assessed through a combined experimental and theoretical methodology. Significant equilibrium constants ( ∼ 10) have been measured for sulfur-containing compounds, in agreement with the previously highlighted, relatively stable radiolabeling of SH-containing proteins with At. Conversely, no interaction occurs in the aqueous phase for their oxygenated counterparts, but higher affinities ( > 10) have been determined for nitrogen-based ligands, including aromatic nitrogen heterocycles. The quantum mechanical calculations definitively ruled out any rationale based on either the metallic character of astatine or its guessed softness; the favored interactions all involve specifically the oxygen atom of AtO, leading to the formation of covalent O-S or O-C single bonds.
通过实验和理论相结合的方法,评估了 AtO 与约 20 种带有官能化氧、硫和氮原子的模型配体 (L) 的亲和力。含硫化合物的平衡常数(约 10)较大,与之前突出的、用 At 相对稳定地标记含 SH 蛋白质的结果一致。相反,它们的含氧对应物在水相中没有相互作用,但对基于氮的配体(包括芳香氮杂环)确定了更高的亲和力(>10)。量子力学计算明确排除了基于砹的金属特性或其推测的柔软性的任何基本原理;有利的相互作用都涉及 AtO 的氧原子,导致形成共价 O-S 或 O-C 单键。