首页> 外文期刊>Journal of Medicinal Chemistry >Identification of Novel Binding Interactions in the Development of Potent, Selective 2-Naphthamidine Inhibitors of Urokinase. Synthesis, Structural Analysis, and SAR of N-Phenyl Amide 6-Substitution
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Identification of Novel Binding Interactions in the Development of Potent, Selective 2-Naphthamidine Inhibitors of Urokinase. Synthesis, Structural Analysis, and SAR of N-Phenyl Amide 6-Substitution

机译:新型结合相互作用的鉴定在尿激酶的有效的,选择性的2-萘啶抑制剂的发展中。 N-苯基酰胺6-取代的合成,结构分析和SAR

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摘要

The preparation and assessment of biological activity of 6-substituted 2-naphthamidine inhibitors of the serine protease urokinase plasminogen activator (uPA, or urokinase) is described. 2-Naphthamidine was chosen as a starting point based on synthetic considerations and on modeling of substituent vectors. Phenyl amides at the 6-position were found to improve binding; replacement of the amide with other two-atom linkers proved ineffective. The phenyl group itself is situated near the S1' subsite; substitutions off of the phenyl group accessed S1' and other distant binding regions. Three new points of interaction were defined and explored through ring substitution. A solvent-exposed salt bridge with the Asp60A carboxylate was formed using a 4-alkylamino group, improving affinity to K_i = 40 nM. Inhibitors also accessed two hydrophobic regions. One interaction is characterized by a tight hydrophobic fit made with a small dimple largely defined by His57 and His99; a weaker, less specific interaction involves alkyl groups reaching into the broad prime-side protein binding region near Val41 and the Cys42-Cys58 disulfide, displacing water molecules and leading to small gains in activity. Many inhibitors accessed two of these three regions. Affinities range as low as K_i = 6 nM, and many compounds had K_i < 100 nM, while moderate to excellent selectivity was gained versus four of five members of a panel of relevant serine proteases. Also, some selectivity against trypsin was generated via the interaction with Asp60A. X-ray structures of many of these compounds were used to inform our inhibitor design and to increase our understanding of key interactions. In combination with our exploration of 8-substitution patterns, we have identified a number of novel binding interactions for uPA inhibitors.
机译:描述了丝氨酸蛋白酶尿激酶纤溶酶原激活剂(uPA或尿激酶)的6-取代的2-萘啶抑制剂的制备和生物学活性的评估。基于合成考虑和取代基载体的建模,选择2-萘甲啶作为起始点。发现在6-位的苯基酰胺可改善结合。用其他两个原子的连接基取代酰胺被证明是无效的。苯基本身位于S1'亚位附近;苯基上的取代基进入S1'和其他远处的结合区域。通过环取代定义并探索了三个新的相互作用点。使用4-烷基氨基形成与Asp60A羧酸盐接触的盐桥,从而提高了对K_i = 40 nM的亲和力。抑制剂也进入两个疏水区域。一种相互作用的特征是紧密的疏水配合,由一个由His57和His99定义的小酒窝制成。较弱的,较不特异的相互作用涉及到Val41和Cys42-Cys58二硫化物附近的宽泛的质侧蛋白结合区的烷基,从而置换水分子并导致较小的活性增加。许多抑制剂进入这三个区域中的两个。亲和力范围低至K_i = 6 nM,许多化合物的K_i <100 nM,而相对于一组相关丝氨酸蛋白酶的五个成员中的四个成员,则具有中等至出色的选择性。而且,通过与Asp60A的相互作用产生了对胰蛋白酶的一些选择性。这些化合物中许多的X射线结构用于指导我们的抑制剂设计并增进我们对关键相互作用的理解。与我们对8取代模式的探索相结合,我们已经发现了许多针对uPA抑制剂的新型结合相互作用。

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