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膦酸肽类似物的合成及应用的最新进展。

Recent developments in the synthesis and applications of phosphinic peptide analogs.

机构信息

Wrocław University of Science and Technology, Department of Bioorganic Chemistry, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.

Wrocław University of Science and Technology, Department of Bioorganic Chemistry, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.

出版信息

Bioorg Med Chem Lett. 2019 May 1;29(9):1031-1042. doi: 10.1016/j.bmcl.2019.02.034. Epub 2019 Feb 28.

DOI:10.1016/j.bmcl.2019.02.034
PMID:30846252
Abstract

Synthetic pseudopeptides that fit well with the active site architecture allow the most effective binding to enzymes, similar to native substrates in high-energy transition states. Phosphinic acid peptide analogs that comprise the tetrahedral phosphorus moiety introduced to replace an internal amide bond exert such an isosteric or isoelectronic resemblance, combined with providing other advantageous features, for example, metal complexing properties. Accordingly, they are capable of inhibiting metal-dependent enzymes involved in biological functions in eukaryotic and prokaryotic cells. These enzymes are associated with notorious human diseases, such as cancer, e.g., matrix metalloproteinases, or are etiological factors of protozoal and bacterial infections, e.g., metalloaminopeptidases. The affinity and selectivity of these compounds can be conveniently adjusted, either by structural modification of dedicated side chains or by backbone elongation to enhance specific interactions with the corresponding binding pockets. Recent approaches to the synthesis of these compounds are illustrated by examples of the preparation of rationally designed structures of inhibitors of particular enzymes. Activity against appealing enzymatic targets is presented, along with the molecular mechanisms of action and therapeutic implications. Innovative aspects of phosphinic peptide application, e.g., as activity-based probes, and ligands of complexes of radioisotopes for nuclear medicine are also outlined.

摘要

合成的伪肽与酶的活性位点结构非常匹配,允许与酶最有效地结合,类似于高能过渡态中的天然底物。包含四面体磷部分的膦酸肽类似物被引入以取代内部酰胺键,具有这种等排或等电子相似性,同时提供其他有利的特性,例如金属络合性质。因此,它们能够抑制参与真核和原核细胞中生物功能的依赖金属的酶。这些酶与臭名昭著的人类疾病有关,例如癌症,例如基质金属蛋白酶,或者是原生动物和细菌感染的病因因素,例如金属氨基肽酶。这些化合物的亲和力和选择性可以通过专门侧链的结构修饰或通过骨架延长来方便地调节,以增强与相应结合口袋的特定相互作用。通过制备具有特定酶抑制剂的合理设计结构的实例来说明这些化合物的合成的最新方法。还介绍了针对有吸引力的酶靶标的活性,以及作用机制和治疗意义。还概述了膦酸肽应用的创新方面,例如作为基于活性的探针,以及放射性同位素配合物的配体用于核医学。

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