Research Group of Organic Chemistry, Departments of Chemistry and Bioengineering Sciences, Vrije Universiteit Brussel, Pleinlaan 2, 1050, Brussels, Belgium; Department of Pharmaceutical Chemistry, Drug Analysis and Drug Information, Center for Neurosciences (C4N), Vrije Universiteit Brussel, Laarbeeklaan 103, 1090 Brussels, Belgium.
Research Group of Organic Chemistry, Departments of Chemistry and Bioengineering Sciences, Vrije Universiteit Brussel, Pleinlaan 2, 1050, Brussels, Belgium.
Eur J Med Chem. 2018 Jan 20;144:887-897. doi: 10.1016/j.ejmech.2017.12.035. Epub 2017 Dec 14.
Neuromedin U (NMU) is a highly conserved endogenous peptide that is involved in a wide range of physiological processes such as regulation of feeding behavior, the stress response and nociception. The major limitation to use NMU as a therapeutic is its short half-life. Here, we describe the development of a set of novel NMU-analogs based on NMU-8, by introducing unnatural amino acids into the native sequence. This approach shows that it is possible to generate molecules with increased potency and improved plasma stability without major changes of the peptidic nature or the introduction of large conjugates. When compared to the native NMU-8 peptide, compounds 16, 18 and 20 have potent agonist activity and affinity for both NMU receptors. Selectivity towards NMUR1 was observed when the Phe residue in position 4 was modified, whereas higher potencies at NMUR2 were found when substitutions of the Pro residue in position 6 were executed. To study the effect of the modifications on the proteolytic stability of the molecules, an in vitro stability assay in human plasma at 37 °C was performed. All analyzed analogs possessed an increased resistance against enzymatic degradation in human plasma resulting in half-lifes from 4 min for NMU-8, up to more than 23 h for compound 42.
神经调节素 U(NMU)是一种高度保守的内源性肽,参与广泛的生理过程,如调节摄食行为、应激反应和痛觉。将 NMU 用作治疗药物的主要限制是其半衰期短。在这里,我们通过在天然序列中引入非天然氨基酸来描述一组基于 NMU-8 的新型 NMU 类似物的开发。这种方法表明,有可能在不改变肽性质或引入大缀合物的情况下,产生效力更高且血浆稳定性更好的分子。与天然的 NMU-8 肽相比,化合物 16、18 和 20 对两种 NMU 受体均具有有效的激动剂活性和亲和力。当位置 4 的 Phe 残基被修饰时,观察到对 NMUR1 的选择性,而当位置 6 的 Pro 残基被取代时,发现对 NMUR2 的效力更高。为了研究修饰对分子的蛋白水解稳定性的影响,在 37°C 的人血浆中进行了体外稳定性测定。所有分析的类似物在人血浆中对酶降解的抗性增加,半衰期从 NMU-8 的 4 分钟延长至化合物 42 的 23 小时以上。