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含两个次膦酸基团的新型拟寡肽的设计、合成及金属配位

Design, synthesis, and metal binding of novel Pseudo- oligopeptides containing two phosphinic acid groups.

作者信息

Ye Yunpeng, Liu Min, Kao Jeff L-F, Marshall Garland R

机构信息

Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, 660 S. Euclid Avenue, St. Louis, MO 63110, USA.

出版信息

Biopolymers. 2008 Jan;89(1):72-85. doi: 10.1002/bip.20855.

Abstract

Phosphinic compounds have potential as amide-bond mimetics in the development of novel peptidomimetics, enzyme inhibitors, and metal-binding ligands. Novel pseudo-oligopeptides with two phosphinic acid groups embedded in the peptide backbone serving as amide-bond surrogates, Psi[P(O,OH)--CH(2)], were targeted. A series of linear and cyclic pseudo-oligopeptides with two phosphinic acid groups arrayed at different positions in the peptide sequence were designed, including Ac--Phe--{(R,S)--AlaPsi[P(O,OH)--CH(2)]Gly}(2)--NH(2) (P2), Ac--NH--(R,S)--AlaPsi[P(O,OH)--CH(2)]Gly--Phe--(R,S)--AlaPsi[P(O,OH)--CH(2)]Gly--NH(2) (P3), Ac--NH--(R,S)--AlaPsi[P(O,OH)--CH(2)]Gly--Phe--Phe--(R,S) --AlaPsi[P(O,OH)--CH(2)]Gly--NH(2) (P4), cyclo{NH--(R,S)--AlaPsi[P(O,OH)--CH(2)]Gly--Phe}(2) (P5), and cycloNH--(R,S)--AlaPsi[P(O,OH)--CH(2)]Gly--Phe--Phe (P6). They were synthesized via conventional Fmoc chemistry on solid support utilizing Fmoc-protected phosphinic acid-containing pseudo-dipeptide fragment, i.e. Fmoc--(R,S)--AlaPsi[P(O,OCH(3))--CH(2)]Gly--OH. The pseudo-peptides containing two phosphinic acid groups exhibited the highest binding affinity and selectivity for Fe(III) among the 10-metal ions screened by ESI-MS analysis--Cu(II), Zn(II), Co(II), Ni(II), Mn(II), Fe(II), Fe(III), Al(III), Ga(III), and Gd(III). P4 and P6 with 11-atom linkages between the two phosphinic acids preferred intramolecular metal binding to form 1:1 ligand/metal complexes. As revealed by competition experiments, P4 showed the highest relative binding affinity among the six compounds tested. Noteworthy, P4 also showed higher relative binding affinity than similar dihydroxamate-containing pseudo-peptides reported previously. The novel structural prototype and facile synthesis along with selective and potent Fe(III) binding strongly suggest that pseudo-peptides containing the two or more phosphinic groups as amide-bond surrogates deserve further exploration in medicinal chemistry.

摘要

次膦酸化合物在新型拟肽、酶抑制剂和金属结合配体的开发中具有作为酰胺键模拟物的潜力。目标是设计一种新型的假寡肽,其肽主链中嵌入两个次膦酸基团作为酰胺键替代物,即Psi[P(O,OH)--CH(2)]。设计了一系列在肽序列中不同位置排列有两个次膦酸基团的线性和环状假寡肽,包括Ac--Phe--{(R,S)--AlaPsi[P(O,OH)--CH(2)]Gly}(2)--NH(2) (P2)、Ac--NH--(R,S)--AlaPsi[P(O,OH)--CH(2)]Gly--Phe--(R,S)--AlaPsi[P(O,OH)--CH(2)]Gly--NH(2) (P3)、Ac--NH--(R,S)--AlaPsi[P(O,OH)--CH(2)]Gly--Phe--Phe--(R,S) --AlaPsi[P(O,OH)--CH(2)]Gly--NH(2) (P4)、环{NH--(R,S)--AlaPsi[P(O,OH)--CH(2)]Gly--Phe}(2) (P5)和环NH--(R,S)--AlaPsi[P(O,OH)--CH(2)]Gly--Phe--Phe (P6)。它们通过常规的Fmoc化学方法在固相载体上合成,使用Fmoc保护的含次膦酸的假二肽片段,即Fmoc--(R,S)--AlaPsi[P(O,OCH(3))--CH(2)]Gly--OH。通过电喷雾电离质谱分析筛选的10种金属离子(Cu(II)、Zn(II)、Co(II)、Ni(II)、Mn(II)、Fe(II)、Fe(III)、Al(III)、Ga(III)和Gd(III))中,含有两个次膦酸基团的假肽对Fe(III)表现出最高的结合亲和力和选择性。两个次膦酸之间具有11原子连接的P4和P6更倾向于分子内金属结合以形成1:1的配体/金属配合物。竞争实验表明,P4在所测试的六种化合物中表现出最高的相对结合亲和力。值得注意的是,P4的相对结合亲和力也高于先前报道的类似含二氧肟酸的假肽。这种新型的结构原型、简便的合成方法以及对Fe(III)的选择性和强效结合强烈表明,含有两个或更多次膦酸基团作为酰胺键替代物的假肽在药物化学中值得进一步探索。

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