Bálint Balázs, Wéber Csaba, Cruzalegui Francisco, Burbridge Mike, Kotschy Andras
Servier Research Institute of Medicinal Chemistry, Záhony u. 7, 1031, Budapest, Hungary.
Institute de Recherche Servier, 50 Rue Carnot, Suresnes, 92150, France.
ChemMedChem. 2017 Jun 21;12(12):932-939. doi: 10.1002/cmdc.201600539. Epub 2017 Apr 6.
Dual-specificity tyrosine-phosphorylation-regulated kinase 1A (DYRK1A) is an emerging biological target with implications in diverse therapeutic areas such as neurological disorders (Down syndrome, in particular), metabolism, and oncology. Harmine, a natural product that selectively inhibits DYRK1A amongst kinases, could serve as a tool compound to better understand the biological processes that arise from DYRK1A inhibition. On the other hand, harmine is also a potent inhibitor of monoamine oxidase A (MAO-A). Using structure-based design, we synthesized a collection of harmine analogues with tunable selectivity toward these two enzymes. Modifications at the 7-position typically decreased affinity for DYRK1A, whereas substitution at the 9-position had a similar effect on MAO-A inhibition but DYRK1A inhibition was maintained. The resulting collection of compounds can help to understand the biological role of DYRK1A and also to assess the interference in the biological effect originating in MAO-A inhibition.
双特异性酪氨酸磷酸化调节激酶1A(DYRK1A)是一个新兴的生物学靶点,在多种治疗领域具有重要意义,如神经疾病(尤其是唐氏综合征)、代谢和肿瘤学。哈尔明是一种在激酶中选择性抑制DYRK1A的天然产物,可作为一种工具化合物,用于更好地理解由DYRK1A抑制引发的生物学过程。另一方面,哈尔明也是单胺氧化酶A(MAO-A)的强效抑制剂。利用基于结构的设计,我们合成了一系列对这两种酶具有可调选择性的哈尔明类似物。在7位的修饰通常会降低对DYRK1A的亲和力,而在9位的取代对MAO-A抑制有类似影响,但对DYRK1A的抑制作用得以维持。所得的化合物集合有助于理解DYRK1A的生物学作用,也有助于评估对源于MAO-A抑制的生物学效应的干扰。