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Pairs of dipeptides synergistically activate the binding of substrate by ubiquitin ligase through dissociation of its autoinhibitory domain

机译:对二肽通过其自身抑制域的解离协同激活泛素连接酶与底物的结合

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Protein degradation by the ubiquitin (Ub) system controls the concentrations of many regulatory proteins. The degradation signals (degrons) of these proteins are recognized by the system's Ub ligases (complexes of E2 and E3 enzymes). Two substrate-binding sites of UBR1, the E3 of the N-end rule pathway in the yeast Saccharomyces cerevisiae, recognize basic (type 1) and bulky hydrophobic (type 2) N-terminal residues of proteins or short peptides. A third substrate-binding site of UBR1 targets CUP9, a transcriptional repressor of the peptide transporter PTR2, through an internal (non-N-terminal) de-gron of CUP9. Previous work demonstrated that dipeptides with destabilizing N-terminal residues allosterically activate UBR1, leading to accelerated in vivo degradation of CUP9 and the induction of PTR2 expression. Through this positive feedback, S. cerevisiae can sense the presence of extracellular peptides and react by accelerating their uptake. Here, we show that dipeptides with destabilizing N-terminal residues cause dissociation of the C-terminal autoinhibitory domain of UBR1 from its N-terminal region that contains all three substrate-binding sites. This dissociation, which allows the interaction between UBR1 and CUP9, is strongly increased only if both type 1- and type 2-binding sites of UBR1 are occupied by dipeptides. An aspect of autoinhibition characteristic of yeast UBR1 also was observed with mammalian (mouse) UBR1. The discovery of autoinhibition in Ub ligases of the UBR family indicates that this regulatory mechanism may also control the activity of other Ub ligases.
机译:泛素(Ub)系统对蛋白质的降解控制了许多调节蛋白的浓度。这些蛋白质的降解信号(degrons)被系统的Ub连接酶(E2和E3酶的复合物)识别。 UBR1的两个底物结合位点,即酿酒酵母中N端规则途径的E3,识别蛋白质或短肽的碱性(1型)和大体积疏水性(2型)N末端残基。 UBR1的第三个底物结合位点通过CUP9的内部(非N端)反铁蛋白靶向肽转运蛋白PTR2的转录阻遏物CUP9。先前的工作表明,具有不稳定的N末端残基的二肽会变构地激活UBR1,从而导致CUP9的体内降解加速和PTR2表达的诱导。通过这种积极的反馈,酿酒酵母可以感觉到细胞外肽的存在,并通过加速其摄取来做出反应。在这里,我们显示具有不稳定的N末端残基的二肽导致UBR1的C末端自抑制域从其包含所有三个底物结合位点的N末端区域解离。仅当UBR1的1型和2型结合位点都被二肽占据时,这种离解才允许UBR1和CUP9之间的相互作用。在哺乳动物(小鼠)UBR1中也观察到了酵母UBR1的自抑制特征的一个方面。在UBR家族的Ub连接酶中自动抑制的发现表明该调节机制也可以控制其他Ub连接酶的活性。

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