首页> 外文期刊>The Journal of Organic Chemistry >Enhanced Stereoselectivity of a Cu(II) Complex Chiral Auxiliary in the Synthesis of Fmoc-l-γ-carboxyglutamic Acid
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Enhanced Stereoselectivity of a Cu(II) Complex Chiral Auxiliary in the Synthesis of Fmoc-l-γ-carboxyglutamic Acid

机译:Fmoc-1-γ-羧基谷氨酸合成中Cu(II)络合物手性助剂的立体选择性增强

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摘要

l-γ-Carboxyglutamic acid (Gla) is an uncommon amino acid that binds avidly to mineral surfaces and metal ions. Herein, we report the synthesis of N-α-Fmoc-l-γ-carboxyglutamic acid γ, γ′-tert-butyl ester (Fmoc-Gla(OtBu)2-OH), a suitably protected analogue for Fmoc-based solid-phase peptide synthesis. The residue was synthesized using a novel chiral Cu(II) complex, whose structure-based design was inspired by the blue copper protein rusticyanin. The five-coordinate complex is formed by Shiff base formation between glycine and the novel ligand (S)-2-(N-(2-methylthio)benzylprolyl)aminobenzophenone in the presence of copper. Michael addition of di-tert-butyl methylenemalonate to the α-carbon of the glycine portion of the complex occurs in a diastereoselective fashion. The resulting (S, S)-complex diastereomer can be easily purified by chromatography. Metal complex decomposition followed by Fmoc protection affords the enantiomerically pure amino acid. With the use of this novel chiral complex, the asymmetric synthesis of Fmoc-Gla(OtBu)2-OH was completed in nine steps from thiosalicylic acid in 14.5% overall yield.
机译:l-γ-羧基谷氨酸(Gla)是一种罕见的氨基酸,与矿物质表面和金属离子紧密结合。在此,我们报告了N-α-Fmoc-1-γ-羧基谷氨酸的合成方法,即γ'-叔丁基酯(Fmoc-Gla(OtBu)2-OH),它是受保护的基于Fmoc的固体类似物相肽合成。残留物是使用新型手性Cu(II)配合物合成的,其结构设计基于蓝色铜蛋白Rustyanin。在铜的存在下,甘氨酸与新型配体(S)-2-(N-(2-甲硫基)苄基脯氨酰)氨基二苯甲酮之间通过席夫碱形成,形成了五配位络合物。亚甲基丙二酸二叔丁酯的迈克尔加成到复合物的甘氨酸部分的α-碳上以非对映选择性的方式发生。可以容易地通过色谱法纯化所得的(S,S)-复合非对映异构体。金属配合物分解,然后进行Fmoc保护,得​​到对映体纯的氨基酸。通过使用这种新型手性配合物,Fmoc-Gla(OtBu)2-OH的不对称合成由硫代水杨酸分九步完成,总收率为14.5%。

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