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Bioactive cyclometalated phthalimides: Design, synthesis and kinase inhibition

机译:生物活性环金属化邻苯二甲酰亚胺:设计,合成和激酶抑制

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摘要

The regioselective cyclometalation of 4-(pyridin-2-yl)phthalimide was exploited for the economical design of organometallic protein kinase inhibitors. 4-(Pyridin-2-yl)phthalimide can be prepared from inexpensive 4-bromophthalimide in just three steps including one Pd-catalyzed Stille cross-coupling. The versatility of this new ligand was demonstrated with the synthesis of ruthenium(ii) half-sandwich as well as octahedral ruthenium(ii) and iridium(iii) complexes. The regioselectivity of the C-H activation in the course of the cyclometalation can be influenced by the reaction conditions and the steric demand of the introduced metal complex fragment. The biological activity of this new class of metalated phthalimides was evaluated by profiling two representative members against a large panel of human protein kinases. A cocrystal structure of one metallo-phthalimide with the protein kinase Pim1 confirmed an ATP-competitive binding with the intended hydrogen bonding between the phthalimide moiety and the hinge region of the ATP-binding site.
机译:4-(吡啶-2-基)邻苯二甲酰亚胺的区域选择性环金属化被用于经济设计有机金属蛋白激酶抑制剂。 4-(Pyridin-2-yl)phthalimide可以由廉价的4-溴邻苯二甲酰亚胺分三步制备,包括一次Pd催化的Stille交叉偶联。钌(ii)半三明治以及八面体钌(ii)和铱(iii)配合物的合成证明了这种新配体的多功能性。环金属化过程中C-H活化的区域选择性可能受反应条件和引入的金属络合物片段的空间需求的影响。通过对一大批人类蛋白激酶的两个代表性成员进行分析,评估了这一新型金属化邻苯二甲酰亚胺的生物活性。一种金属邻苯二甲酰亚胺与蛋白激酶Pim1的共晶体结构证实了ATP竞争性结合,并在邻苯二甲酰亚胺部分和ATP结合位点的铰链区之间形成了预期的氢键。

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