Fournier Françoise, Afonso Carlos, Ménand Mickaël, Hamon Louis, Xie Juan, Tabet Jean-Claude
Université Pierre et Marie Curie-Paris 6, CNRS UMR7613, Synthèse, Structure et Fonction de Molécules Bioactives, F- 75005 Paris, France.
Eur J Mass Spectrom (Chichester). 2008;14(2):61-9. doi: 10.1255/ejms.912.
The affinity of cyclic oligomers of sugar amino acid and sugar-aza-crown ether compounds towards various transition metal cations (Cu(II), Ni(II), Co(II), Fe(II) and Zn(II)) was investigated with positive-ion electrospray mass spectrometry. The binding between the receptors (M) and the different metals (Met) is evidenced mainly by the presence of the M + Met(II)Cl ion. The experimental results showed that all studied receptors present specificity to Cu(II). An attempt has been made with CuI but no complexation was obtained. The formation of these complexes can be rationalized by considering the presence of two oxygens and two nitrogens on the receptor rim. The lone electron pair can serve as the electron donor to Cu(II). Theoretical calculations were carried out in order to show the structure of the complex and, in particular, to determine if Cu(2+) is situated either on the outer surface, on the rim of the receptor or inside the cavity. Comparison of complex formation was carried out by mixing the four receptors with various amounts of Cu(II) (one equivalent and five equivalents). It appears that the best complexation was obtained with the sugar-aza-crown ethers (amine linker) for both benzylated and methylated compounds. In addition, the stereochemical effects have been investigated.
采用正离子电喷雾质谱法研究了糖氨基酸和糖氮杂冠醚化合物的环状低聚物对各种过渡金属阳离子(Cu(II)、Ni(II)、Co(II)、Fe(II)和Zn(II))的亲和力。受体(M)与不同金属(Met)之间的结合主要通过M + Met(II)Cl离子的存在来证明。实验结果表明,所有研究的受体对Cu(II)都具有特异性。用CuI进行了尝试,但未得到络合物。考虑到受体边缘存在两个氧原子和两个氮原子,可以解释这些络合物的形成。孤对电子可以作为给体向Cu(II)提供电子。进行了理论计算以显示络合物的结构,特别是确定Cu(2+)是位于受体的外表面、边缘还是腔内。通过将四种受体与不同量的Cu(II)(1当量和5当量)混合来比较络合物的形成情况。结果表明,对于苄基化和甲基化化合物,糖氮杂冠醚(胺连接基)的络合效果最佳。此外,还研究了立体化学效应。