Benjamin Don, Schmidlin Martin, Min Lu, Gross Brigitte, Moroni Christoph
Institute for Medical Microbiology, Petersplatz 10, 4003 Basel, Switzerland.
Mol Cell Biol. 2006 Dec;26(24):9497-507. doi: 10.1128/MCB.01099-06. Epub 2006 Oct 9.
BRF1 posttranscriptionally regulates mRNA levels by targeting ARE-bearing transcripts to the decay machinery. We previously showed that protein kinase B (PKB) phosphorylates BRF1 at Ser92, resulting in binding to 14-3-3 and impairment of mRNA decay activity. Here we identify an additional regulatory site at Ser203 that cooperates in vivo with Ser92. In vitro kinase labeling and wortmannin sensitivity indicate that Ser203 phosphorylation is also performed by PKB. Mutation of both serines to alanine uncouples BRF1 from PKB regulation, leading to constitutive mRNA decay even in the presence of stabilizing signals. BRF1 protein is labile because of proteasomal degradation (half-life, <3 h) but becomes stabilized upon phosphorylation and is less stable in PKBalpha(-/-) cells. Surprisingly, phosphorylation-dependent protein stability is also regulated by Ser92 and Ser203, with parallel phosphorylation required at these sites. Phosphorylation-dependent binding to 14-3-3 is abolished only when both sites are mutated. Cell compartment fractionation experiments support a model in which binding to 14-3-3 sequesters BRF1 through relocalization and prevents it from executing its mRNA decay activity, as well as from proteasomal degradation, thereby maintaining high BRF1 protein levels that are required to reinstate decay upon dissipation of the stabilizing signal.
BRF1通过将含富AU元件(ARE)的转录本靶向降解机制,在转录后水平调控mRNA水平。我们之前发现蛋白激酶B(PKB)使BRF1的92位丝氨酸磷酸化,导致其与14-3-3结合并损害mRNA降解活性。在此,我们确定了203位丝氨酸是另一个在体内与92位丝氨酸协同作用的调控位点。体外激酶标记和渥曼青霉素敏感性实验表明,203位丝氨酸的磷酸化也是由PKB完成的。将这两个丝氨酸都突变为丙氨酸会使BRF1脱离PKB的调控,即使在存在稳定信号的情况下也会导致组成型mRNA降解。BRF1蛋白因蛋白酶体降解而不稳定(半衰期<3小时),但磷酸化后会变得稳定,且在PKBα基因敲除(-/-)细胞中更不稳定。令人惊讶的是,磷酸化依赖性蛋白稳定性也受92位丝氨酸和203位丝氨酸调控,这些位点需要平行磷酸化。只有当两个位点都突变时,与14-3-3的磷酸化依赖性结合才会被消除。细胞区室分级实验支持这样一个模型:与14-3-3的结合通过重新定位隔离BRF1,阻止其执行mRNA降解活性以及蛋白酶体降解,从而维持高BRF1蛋白水平,这在稳定信号消散后恢复降解时是必需的。