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手性N-连接肽基间苯二酚[4]芳烃的合成及主客体研究

Synthesis and host-guest studies of chiral N-linked peptidoresorc[4]arenes.

作者信息

Botta Bruno, D'Acquarica Ilaria, Monache Giuliano Delle, Subissati Deborah, Uccello-Barretta Gloria, Mastrini Massimo, Nazzi Samuele, Speranza Maurizio

机构信息

Dipartimento di Studi di Chimica e Tecnologia delle Sostanze Biologicamente Attive, Università La Sapienza, P le Aldo Moro 5, 00185, Roma, Italy.

出版信息

J Org Chem. 2007 Nov 23;72(24):9283-90. doi: 10.1021/jo7016636. Epub 2007 Oct 25.

Abstract

Four cone resorc[4]arene octamethyl ethers (10, 11, ent-10, and ent-11) tetrafunctionalized at the feet with valyl-leucine [LL- (6); DD- (ent-6)] and leucyl-valine [LL- (9); DD- (ent-9)] methyl esters have been synthesized. These compounds, obtained by conjugation of macrocycle tetracarboxylic acid chlorides with the appropriate terminal amino groups of the above dipeptides, are N-linked peptidoresorc[4]arenes. We found that these macrocycles (M) are capable of recognizing the homologue dipeptides as guests (G), both in solution and in the gas phase, by forming relatively stable host-guest complexes ([M.G]), resistant to chromatographic purification but not to heating. Complexation phenomena between M and G in solution were investigated by NMR methods, including NMR DOSY experiments, for the detection of translational diffusion. Heteroassociation constants of 2030 and 186 M(-1) were obtained by the Foster-Fyfe method for the complexes [10.6] and [10.ent-6], respectively, the latter being comparable to the self-association constant of dipeptide itself. Conversely, the structural features of the proton-bound complexes [M.H.Gn]+ (n = 1, 2), generated in the gas phase by electrospray ionization mass spectrometry (ESI-MS), were investigated by collision-induced dissociation (CID) experiments. In both cases, the four N-linked peptidoresorc[4]arenes were shown to act as synthetic receptors and to recognize the homologue dipeptide by means of hydrogen bonds.

摘要

已合成了四种在脚部用缬氨酰 - 亮氨酸[LL - (6); DD - (对映体 - 6)]和亮氨酰 - 缬氨酸[LL - (9); DD - (对映体 - 9)]甲酯进行四官能化的锥型间苯二酚[4]芳烃八甲基醚(10、11、对映体 - 10和对映体 - 11)。这些化合物是通过大环四羧酸氯化物与上述二肽的适当末端氨基共轭得到的,属于N - 连接肽间苯二酚[4]芳烃。我们发现这些大环化合物(M)在溶液和气相中都能够通过形成相对稳定的主客体复合物([M.G])来识别同源二肽作为客体(G),该复合物对色谱纯化具有抗性,但对加热敏感。通过包括NMR DOSY实验在内的NMR方法研究了溶液中M和G之间的络合现象,用于检测平移扩散。通过Foster - Fyfe方法分别得到了复合物[10.6]和[10.对映体 - 6]的异缔合常数为2030和186 M⁻¹,后者与二肽本身的自缔合常数相当。相反,通过电喷雾电离质谱(ESI - MS)在气相中产生的质子结合复合物[M.H.Gn]+ (n = 1, 2)的结构特征通过碰撞诱导解离(CID)实验进行了研究。在这两种情况下,四种N - 连接肽间苯二酚[4]芳烃均显示出作为合成受体的作用,并通过氢键识别同源二肽。

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