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Crystal structures of the p21-activated kinases PAK4, PAK5, and PAK6 reveal catalytic domain plasticity of active group IIPAKs

机译:p21激活的激酶PAK4,PAK5和PAK6的晶体结构揭示了活性基团IIPAK的催化结构域可塑性

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摘要

p21-activated kinases have been classified into two groups based on their domain architecture. Group II PAKs (PAK4-6) regulate a wide variety of cellular functions, and PAK deregulation has been linked to tumor development. Structural comparison of five high-resolution structures comprising all active, monophosphorylated group II catalytic domains revealed a surprising degree of domain plasticity, including a number of catalytically productive and nonproductive conformers. Rearrangements of helix alpha C, a key regulatory element of kinase function, resulted in an additional helical turn at the alpha C N terminus and a distortion of its C terminus, a movement hitherto unseen in protein kinases. The observed structural changes led to the formation of interactions between conserved residues that structurally link the glycine-rich loop, aC, and the activation segment and firmly anchor aC in an active conformation. Inhibitor screening identified six potent PAK inhibitors from which a tri-substituted purine inhibitor was cocrystallized with PAK4 and PAK5.
机译:p21活化的激酶已根据其结构域结构分为两类。 II组PAK(PAK4-6)调节多种细胞功能,而PAK的失调与肿瘤的发展有关。五个包含所有活性单磷酸化II组催化结构域的高分辨率结构的结构比较显示出令人惊讶的结构域可塑性,包括许多催化生产性和非生产性构象异构体。螺旋αC(激酶功能的关键调控元件)的重排导致αC N末端发生额外的螺旋转折,并导致其C末端发生变形,这是迄今为止蛋白激酶中尚无的运动。观察到的结构变化导致在保守残基之间形成相互作用,所述保守残基在结构上连接富含甘氨酸的环,aC和激活片段,并牢固地将aC锚定在活性构象中。抑制剂筛选确定了六种有效的PAK抑制剂,其中三取代的嘌呤抑制剂与PAK4和PAK5共结晶。

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