Häußler Daniela, Mangold Martin, Furtmann Norbert, Braune Annett, Blaut Michael, Bajorath Jürgen, Stirnberg Marit, Gütschow Michael
Pharmaceutical Institute, Pharmaceutical Chemistry I, University of Bonn, An der Immenburg 4, 53121, Bonn, Germany.
Department of Life Science Informatics, B-IT, LIMES Program Unit Chemical Biology and Medicinal Chemistry, University of Bonn, Dahlmannstrasse 2, 53113, Bonn, Germany.
Chemistry. 2016 Jun 13;22(25):8525-35. doi: 10.1002/chem.201600206. Epub 2016 May 23.
Matriptase-2, a type II transmembrane serine protease, plays a key role in human iron homeostasis. Inhibition of matriptase-2 is considered as an attractive strategy for the treatment of iron-overload diseases, such as hemochromatosis and β-thalassemia. In the present study, synthetic routes to nine dipeptidomimetic inactivators were developed. Five active compounds (41-45) were identified and characterized kinetically as irreversible inhibitors of matriptase-2. In addition to a phosphonate warhead, these dipeptides possess two benzguanidine moieties as arginine mimetics to provide affinity for matriptase-2 by binding to the S1 and S3/S4 subpockets, respectively. This binding mode was strongly supported by covalent docking analysis. Compounds 41-45 were obtained as mixtures of two diastereomers and were therefore separated into the single epimers. Compound 45 A, with S configuration at the N-terminal amino acid and R configuration at the phosphonate carbon atom, was the most potent matriptase-2 inactivator with a rate constant of inactivation of 2790 m(-1) s(-1) and abolished the activity of membrane-bound matriptase-2 on the surface of intact cells. Based on the chemotyp of phosphono bisbenzguanidines, the design and synthesis of a fluorescent probe (51 A) by insertion of a coumarin label is described. The in-gel fluorescence detection of matriptase-2 was demonstrated by applying 51 A as the first activity-based probe for this enzyme.
Matriptase-2是一种II型跨膜丝氨酸蛋白酶,在人体铁稳态中起关键作用。抑制Matriptase-2被认为是治疗铁过载疾病(如血色素沉着症和β地中海贫血)的一种有吸引力的策略。在本研究中,开发了九条合成二肽模拟失活剂的路线。鉴定出五种活性化合物(41 - 45),并对其进行动力学表征,确定它们是Matriptase-2的不可逆抑制剂。除了膦酸酯弹头外,这些二肽还具有两个作为精氨酸模拟物的苯胍基部分,分别通过与S1和S3/S4亚口袋结合为Matriptase-2提供亲和力。这种结合模式得到了共价对接分析的有力支持。化合物41 - 45以两种非对映异构体的混合物形式获得,因此被分离为单一的差向异构体。在N端氨基酸处具有S构型且在膦酸酯碳原子处具有R构型的化合物45 A是最有效的Matriptase-2失活剂,失活速率常数为2790 m⁻¹ s⁻¹,并且消除了完整细胞表面膜结合的Matriptase-2活性。基于膦酰基双苯胍的化学类型,描述了通过插入香豆素标签设计和合成荧光探针(51 A)的过程。通过应用51 A作为该酶首个基于活性的探针,证明了Matriptase-2的凝胶内荧光检测。