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硒唑烷:肽科学中一种含硒的脯氨酸替代物。

Selenazolidine: a selenium containing proline surrogate in peptide science.

作者信息

Cordeau E, Cantel S, Gagne D, Lebrun A, Martinez J, Subra G, Enjalbal C

机构信息

Institut des Biomolécules Max Mousseron (IBMM), UMR 5247, Université de Montpellier, CNRS, ENSCM, Place E. Bataillon, 34095 Montpellier Cedex 5, France.

出版信息

Org Biomol Chem. 2016 Sep 14;14(34):8101-8. doi: 10.1039/c6ob01450j. Epub 2016 Aug 10.

Abstract

In the search for new peptide ligands containing selenium in their sequences, we investigated l-4-selenazolidine-carboxylic acid (selenazolidine, Sez) as a proline analog with the chalcogen atom in the γ-position of the ring. In contrast to proteinogenic selenocysteine (Sec) and selenomethionine (SeMet), the incorporation within a peptide sequence of such a non-natural amino acid has never been studied. There is thus a great interest in increasing the possibility of selenium insertion within peptides, especially for sequences that do not possess a sulfur containing amino acid (Cys or Met), by offering other selenated residues suitable for peptide synthesis protocols. Herein, we have evaluated selenazolidine in Boc/Bzl and Fmoc/tBu strategies through the synthesis of a model tripeptide, both in solution and on a solid support. Special attention was paid to the stability of the Sez residue in basic conditions. Thus, generic protocols have been optimized to synthesize Sez-containing peptides, through the use of an Fmoc-Xxx-Sez-OH dipeptide unit. As an example, a new analog of the vasopressin receptor-1A antagonist was prepared, in which Pro was replaced with Sez [3-(4-hydroxyphenyl)-propionyl-d-Tyr(Me)-Phe-Gln-Asn-Arg-Sez-Arg-NH2]. Both proline and such pseudo-proline containing peptides exhibited similar pharmacological properties and endopeptidase stabilities indicating that the presence of the selenium atom has minimal functional effects. Taking into account the straightforward handling of Sez as a dipeptide building block in a conventional Fmoc/tBu SPPS strategy, this result suggested a wide range of potential uses of the Sez amino acid in peptide chemistry, for instance as a viable proline surrogate as well as a selenium probe, complementary to Sec and SeMet, for NMR and mass spectrometry analytical purposes.

摘要

在寻找序列中含有硒的新型肽配体的过程中,我们研究了L-4-硒唑烷羧酸(硒唑烷,Sez)作为脯氨酸类似物,其环的γ位含有硫族原子。与蛋白质原性硒代半胱氨酸(Sec)和硒代蛋氨酸(SeMet)不同,这种非天然氨基酸在肽序列中的掺入从未被研究过。因此,人们非常有兴趣通过提供其他适合肽合成方案的硒化残基,增加硒插入肽中的可能性,特别是对于不含有含硫氨基酸(Cys或Met)的序列。在此,我们通过在溶液中和在固相载体上合成模型三肽,评估了Boc/Bzl和Fmoc/tBu策略中的硒唑烷。特别关注了Sez残基在碱性条件下的稳定性。因此,通过使用Fmoc-Xxx-Sez-OH二肽单元,优化了通用方案以合成含Sez的肽。例如,制备了血管加压素受体-1A拮抗剂的新类似物,其中Pro被Sez取代[3-(4-羟基苯基)-丙酰基-d-酪氨酸(甲基)-苯丙氨酸-谷氨酰胺-天冬酰胺-精氨酸-Sez-精氨酸-NH2]。脯氨酸和这种含假脯氨酸的肽都表现出相似的药理性质和内肽酶稳定性,表明硒原子的存在具有最小的功能影响。考虑到在传统的Fmoc/tBu固相肽合成策略中,Sez作为二肽构建块易于操作,这一结果表明Sez氨基酸在肽化学中有广泛的潜在用途,例如作为可行的脯氨酸替代物以及作为与Sec和SeMet互补的用于NMR和质谱分析目的的硒探针。

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