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An NF-kappa B-specific inhibitor, I kappa B alpha, binds to and inhibits cyclin-dependent kinase 4

机译:NF-Kappa B特异性抑制剂,I KappaBα,结合并抑制细胞周期蛋白依赖性激酶4

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IkappaBalpha, a protein composed of six ankyrin repeats, is a specific inhibitor of nuclear factor kappaB (NF-kappaB) and functions in signal transductions in many different cell types. Using both in vivo yeast two-hybrid assays and in vitro activity and binding assays, we showed that IkappaBalpha binds to cyclin-dependent kinase 4 (CDK4) specifically and inhibits its kinase activity. The potencies of binding and inhibition of IkappaBalpha are comparable to those of INK4 proteins, the specific CDK4 inhibitors that also contain ankyrin repeats. Furthermore, we showed that INK4 proteins and IkappaBalpha compete with each other for binding to CDK4. These results led us to propose a hypothesis that there is cross talk between the NF-kappaB/IkappaBalpha-pathway and the p16/CDK4/Rb pathway in cells, and that IkappaBalpha could substitute for the CDK4-inhibiting function of p16, a tumor suppressor frequently inactivated in human tumors. To further understand the structural basis of IkappaBalpha-CDK binding, we used different mutants of CDK4 to show that there are notable differences between IkappaBalpha and INK4 proteins in CDK4 binding since the binding is affected differently by different CDK4 mutations. We also demonstrated that the interaction of IkappaBalpha with CDK4 is different from that with its NF-kappaB. While most of the contacts contributing to NF-kappaB binding are located within the last two C-terminal ankyrin repeats and the loop region bridging them, the first four ankyrin repeats at the N-terminus are responsible for CDK4 binding and inhibition. [References: 33]
机译:Ikappabalpha是一种由六个ankyrin重复组成的蛋白质,是核因子Kappab(NF-κB)的特异性抑制剂,以及许多不同细胞类型中的信号转导的功能。使用体内酵母双杂交测定和体外活性和结合测定,我们表明Ikappabalpha特异性地与细胞周期蛋白依赖性激酶4(CDK4)结合并抑制其激酶活性。 Ikappabalpha的结合和抑制的疗效与Ink4蛋白的结合和抑制性相当,所述蛋白质的特异性CDK4抑制剂也含有Ankyrin重复。此外,我们表明Ink4蛋白和Ikappabalpha彼此竞争,用于结合CDK4。这些结果导致我们提出了一个假设,即NF-Kappab / Ikappabalpha途径和细胞中的P16 / CDK4 / RB途径之间存在串扰,并且Ikappabalpha可以替代P16的CDK4抑制功能,肿瘤抑制剂经常在人肿瘤中灭活。为了进一步了解IkappAbalpha-CDK结合的结构基础,我们使用了CDK4的不同突变体,表明CDK4结合中的IkappAbalpha和Ink4蛋白之间存在显着差异,因为结合受到不同的CDK4突变的不同。我们还表明Ikappabalpha与CDK4的相互作用与其NF-κB的互动不同。虽然有关NF-κB结合的大多数触点位于最后两个C末端Ankyrin重复和环绕它们的环区域内,但是在N-末端的前四个Ankyrin重复是CDK4结合和抑制的原因。 [参考:33]

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