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Inhibition properties of free and conjugated leupeptin analogues

机译:自由和共轭的Leupeptin类似物的抑制性质

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Leupeptin is a naturally occurring inhibitor of various proteases, in particular serine proteases. Following its discovery, the inhibitory properties of several other peptidyl argininals have been studied. The specificity of leupeptin is most likely due to the Leu–Leu–Argininal sequence, and its C‐terminal aldehyde group has been suggested to enhance the binding efficiency and to be essential for function. The terminal aldehyde group makes the structure less vulnerable to carboxypeptidases. Here, we investigated whether the inhibitory function of leupeptin toward serine proteases is retained after oxidation or reduction of the aldehyde group. The oxidized form, which corresponds to the natural precursor, was shown to be superior to the reduced form in terms of inhibitory properties. However, the original leupeptin possessed enhanced inhibitory properties as compared with the oxidized form. Based on these results, new synthetic leupeptin analogues, 6‐aminohexanoic acid (Ahx)–Phe–Leu–Arg–COOH and Ahx–Leu–Leu–Arg–COOH, were prepared by solid‐phase peptide synthesis using the Fmoc strategy. In these analogues, the N‐terminal capping acetyl group was replaced with a 6‐aminohexanoyl group to allow conjugation. The structures of the modified leupeptin and the synthetic peptides were confirmed by mass spectrometry. Determination of the inhibitory properties against trypsin (IEC 3.4.21.4, Chymotrypsin IEC 3.4.21.1) revealed that these further modified tripeptides were tight binding inhibitors to their target enzyme, similar to the naturally occurring leupeptin, with Ksubi/sub values generally in the micromolar range. The Ahx–Phe–Leu–Arg–COOH analogue was selected for conjugation to inorganic oxide nanoparticles and agarose gel beads. All conjugates exhibited inhibitory activity in the same range as for the free peptides.
机译:Leupeptin是一种天然存在的各种蛋白酶的抑制剂,特别是丝氨酸蛋白酶。在发现之后,已经研究了几种其他肽基石的抑制性质。 Leupeptin的特异性最可能是由于Leu-Leu-argininal序列,并且已经提出其C-末端醛基来增强结合效率并对功能是必不可少的。醛末端醛基使得结构更容易易受羧肽酶的影响。在这里,我们研究了Leupeptin对氧化蛋白酶的抑制功能是否在氧化或还原醛基后保留。对应于天然前体的氧化形式显示出在抑制性质方面优于降低的形式。然而,与氧化形式相比,原始leapeptin具有增强的抑制性能。基于这些结果,通过使用FMOC策略的固相肽合成制备新的新的合成leapept蛋白类似物,6-氨基己酸(AHX)-Fhe-arg-CoOH和AHX-Leu-Leu-Arg-CoOH。在这些类似物中,用6-氨基己酰基替换N-末端封端乙酰基,以允许缀合。通过质谱法证实改性leapeptin和合成肽的结构。针对胰蛋白酶的抑制性能(IEC 3.4.21.4,ChyMotrypsin IEC 3.4.21.1)揭示了这些进一步改性的三肽与其靶酶的紧密结合抑制剂,类似于天然存在的Leupeptin,其中K I 通常在微摩拉范围内的值。选择AHX-PHE-LUU-ARG-COOH类似物用于与无机氧化物纳米颗粒和琼脂糖凝胶珠缀合。所有缀合物都表现出与游离肽相同的范围内的抑制活性。

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