Department of Bioorganic Chemistry, Wrocław University of Science and Technology, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland.
Department of Organic Chemistry I, Faculty of Pharmacy, Lascaray Research Center, University of the Basque Country (UPV/EHU), Paseo de la Universidad, 7, 01006 Vitoria, Spain.
Int J Mol Sci. 2021 May 11;22(10):5090. doi: 10.3390/ijms22105090.
Phosphinate pseudopeptide are analogs of peptides containing phosphinate moiety in a place of the amide bond. Due to this, the organophosphorus fragment resembles the tetrahedral transition state of the amide bond hydrolysis. Additionally, it is also capable of coordinating metal ions, for example, zinc or magnesium ions. These two properties of phosphinate pseudopeptides make them an ideal candidate for metal-related protease inhibitors. This research investigates the influence of additional residue in the P2 position on the inhibitory properties of phosphinopeptides. The synthetic strategy is proposed, based on retrosynthetic analysis. The N-C-P bond formation in the desired compounds is conveniently available from the three-component condensation of appropriate amino components, aldehydes, and hypophosphorous acid. One of the crucial synthetic steps is the careful selection of the protecting groups for all the functionals. Determination of the inhibitor activity of the obtained compounds has been done using UV-Vis spectroscopy and standard substrate -Leu--nitroanilide toward the enzymes isolated from the porcine kidney (SsLAP, Leucine aminopeptidase) and barley seeds (HvLAP, Leucine aminopeptidase). An efficient procedure for the preparation of phosphinotripeptides has been performed. Activity test shown that introduction of additional residue into P2 position obtains the micromolar range inhibitors of SsLAP and HvLAP. Moreover, careful selection of the residue in the P2 position should improve its selectivity toward mammalian and plant leucyl aminopeptidases.
膦酸酯拟肽是含有膦酸酯部分取代酰胺键的肽类似物。由于这个原因,有机磷片段类似于酰胺键水解的四面体过渡态。此外,它还能够与金属离子(例如锌或镁离子)配位。膦酸酯拟肽的这两个特性使其成为金属相关蛋白酶抑制剂的理想候选物。本研究探讨了在 P2 位置引入额外残基对膦肽抑制特性的影响。根据反合成分析提出了合成策略。所需化合物中的 N-C-P 键的形成可通过适当的氨基组分、醛和次膦酸的三组分缩合方便地获得。其中一个关键的合成步骤是仔细选择所有功能基的保护基。通过使用 UV-Vis 光谱法和标准底物-Leu--硝基苯胺,对从猪肾(SsLAP,亮氨酸氨肽酶)和大麦种子(HvLAP,亮氨酸氨肽酶)中分离出的酶测定获得化合物的抑制活性。已经完成了制备膦三肽的有效程序。活性测试表明,在 P2 位置引入额外的残基可以获得 SsLAP 和 HvLAP 的微摩尔范围抑制剂。此外,仔细选择 P2 位置的残基应能提高其对哺乳动物和植物亮氨肽酶的选择性。