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首页> 外文期刊>Structure >The Crystal Structure of the Catalytic Domain of the NF-κB Inducing Kinase Reveals a Narrow but Flexible Active Site
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The Crystal Structure of the Catalytic Domain of the NF-κB Inducing Kinase Reveals a Narrow but Flexible Active Site

机译:NF-κB诱导激酶催化域的晶体结构揭示了一个狭窄但灵活的活性位点。

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摘要

The NF-kB inducing kinase (NIK) regulates the non-canonical NF-kB pathway downstream of important clinical targets including BAFF, RANKL, and LTβ. Despite numerous genetic studies associating dys-regulation of this pathway with autoimmune diseases and hematological cancers, detailed molecular characterization of this central signaling node has been lacking. We undertook a systematic cloning and expression effort to generate soluble, well-behaved proteins encompassing the kinase domains of human and murine NIK. Structures of the apo NIK kinase domain from both species reveal an activelike conformation in the absence of phosphorylation. ATP consumption and peptide phosphorylation assays confirm that phosphorylation of NIK does not increase enzymatic activity. Structures of murine ? NIK bound to inhibitors possessing two different chemotypes reveal conformational flexibility in the gatekeeper residue controlling access to a hydrophobic pocket. Finally, a single amino acid difference affects the ability of some inhibitors to bind murine and human NIK with the same affinity.
机译:NF-kB诱导激酶(NIK)调节重要临床靶点(包括BAFF,RANKL和LTβ)下游的非经典NF-kB途径。尽管进行了许多遗传学研究,将该途径的调节异常与自身免疫性疾病和血液学癌症相关联,但仍缺乏该中央信号传导节点的详细分子表征。我们进行了系统的克隆和表达工作,以生成可溶的,行为良好的蛋白,其涵盖人和鼠NIK的激酶结构域。来自两个物种的载脂蛋白NIK激酶结构域的结构在没有磷酸化的情况下显示出活性样构象。 ATP消耗和肽磷酸化测定证实了NIK的磷酸化不会增加酶促活性。鼠的结构?与具有两种不同化学型的抑制剂结合的NIK在控制进入疏水口袋的网守残基中显示构象柔性。最后,单个氨基酸差异会影响某些抑制剂以相同亲和力结合鼠和人NIK的能力。

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