Wulczyn F G, Krappmann D, Scheidereit C
Max-Delbrück-Center for Molecular Medicine, MDC, Robert-Rössle-Strasse 10, 13122 Berlin, Germany.
Nucleic Acids Res. 1998 Apr 1;26(7):1724-30. doi: 10.1093/nar/26.7.1724.
Activation of the transcription factor NF-kappaB in response to a variety of stimuli is governed by the signal-induced proteolytic degradation of NF-kappaB inhibitor proteins, the IkappaBs. We have investigated the sequence requirements for signal-induced IkappaBalpha phosphorylation and proteolysis by generating chimeric proteins containing discrete sub-regions of IkappaBalpha fused to the IkappaBalpha homologue Bcl-3, the transcription factor NF-kappaB1/p50 and the tumour suppressor protein p53. Using this approach we show that the N-terminal signal response domain (SRD) of IkappaBalpha directs their signal-dependent phosphorylation and degradation when transferred to heterologous proteins. The C-terminal PEST sequence from IkappaBalpha was not essential for induced proteolysis of the chimeric proteins. A deletion analysis conducted on the SRD identified a 25 amino acid sub-domain of IkappaBalpha that is necessary and sufficient for the degradative response in vivo and for recognition by TNFalpha-dependent IkappaBalpha kinase in vitro . The results obtained should prove instrumental in the further characterization of IkappaB-specific kinases, as well as the E2 and E3 enzymes responsible for IkappaBalpha ubiquitination. Furthermore, they suggest a novel strategy for generating conditional mutants, by targetting heterologous proteins for transient elimination by the IkappaBalpha pathway.
转录因子NF-κB对多种刺激的激活受NF-κB抑制蛋白IkappaB的信号诱导蛋白水解降解调控。我们通过生成嵌合蛋白来研究信号诱导的IkappaBα磷酸化和蛋白水解的序列要求,这些嵌合蛋白包含与IkappaBα同源物Bcl-3、转录因子NF-κB1/p50和肿瘤抑制蛋白p53融合的IkappaBα离散亚区域。使用这种方法,我们表明,当转移到异源蛋白时,IkappaBα的N端信号反应结构域(SRD)指导其信号依赖性磷酸化和降解。来自IkappaBα的C端PEST序列对于嵌合蛋白的诱导蛋白水解不是必需的。对SRD进行的缺失分析确定了IkappaBα的一个25个氨基酸的亚结构域,该亚结构域对于体内降解反应和体外TNFα依赖性IkappaBα激酶的识别是必要且充分的。所获得的结果应有助于进一步表征IkappaB特异性激酶以及负责IkappaBα泛素化的E2和E3酶。此外,它们提出了一种生成条件突变体的新策略,即通过IkappaBα途径靶向异源蛋白进行瞬时消除。