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Profiling the Cross Reactivity of Ubiquitin with the Nedd8 Activating Enzyme by Phage Display

机译:通过噬菌体展示分析泛素与Nedd8活化酶的交叉反应性

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摘要

The C-terminal peptides of ubiquitin (UB) and UB-like proteins (UBLs) play a key role in their recognition by the specific activating enzymes (E1s) to launch their transfer through the respective enzymatic cascades thus modifying cellular proteins. UB and Nedd8, a UBL regulating the activity of cullin-RING UB ligases, only differ by one residue at their C-termini; yet each has its specific E1 for the activation reaction. It has been reported recently that UAE can cross react with Nedd8 to enable its passage through the UB transfer cascade for protein neddylation. To elucidate differences in UB recognition by UAE and NAE, we carried out phage selection of a UB library with randomized C-terminal sequences based on the catalytic formation of UB∼NAE thioester conjugates. Our results confirmed the previous finding that residue 72 of UB plays a “gate-keeping” role in E1 selectivity. We also found that diverse sequences flanking residue 72 at the UB C-terminus can be accommodated by NAE for activation. Furthermore heptameric peptides derived from the C-terminal sequences of UB variants selected for NAE activation can function as mimics of Nedd8 to form thioester conjugates with NAE and the downstream E2 enzyme Ubc12 in the Nedd8 transfer cascade. Once the peptides are charged onto the cascade enzymes, the full-length Nedd8 protein is effectively blocked from passing through the cascade for the critical modification of cullin. We have thus identified a new class of inhibitors of protein neddylation based on the profiles of the UB C-terminal sequences recognized by NAE.
机译:泛素(UB)和UB-like蛋白(UBLs)的C端肽在它们被特异性激活酶(E1s)识别以通过各自的酶促级联反应启动转移的过程中起关键作用,从而修饰细胞蛋白。 UB和Nedd8,一种调控cullin-RING UB连接酶活性的UBL,在其C末端仅相差一个残基。但是每个都具有针对活化反应的特定E1。最近有报道称,阿拉伯联合酋长国可以与Nedd8发生交叉反应,使其能够通过UB转移级联进行蛋白质的糊化。为了阐明UAE和NAE对UB识别的差异,我们基于UB〜NAE硫酯共轭物的催化形成,对具有随机C端序列的UB文库进行噬菌体选择。我们的结果证实了先前的发现,即UB残基72在E1选择性中起“守门”作用。我们还发现,NAE可以容纳UB C末端侧翼残基72的不同序列,以进行激活。此外,衍生自选择用于NAE活化的UB变​​体的C端序列的七聚体肽可以充当Nedd8的模拟物,与NAE和Nedd8转移级联反应中的下游E2酶Ubc12形成硫酯偶联物。一旦将肽带入级联酶上,就可以有效阻断全长Nedd8蛋白通过级联,从而对cullin进行关键修饰。因此,我们基于NAE识别的UB C末端序列的概况,确定了一类新的蛋白质糊化抑制剂。

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