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Mining the TRAF6/p62 interactome for a selective ubiquitination motif

机译:挖掘TRAF6 / p62相互作用基因组以获得选择性泛素基序

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摘要

A new approach is described here to predict ubiquitinated substrates of the E3 ubiquitin ligase, TRAF6, which takes into account its interaction with the scaffold protein SQSTM1/p62. A novel TRAF6 ubiquitination motif defined as [–(hydrophobic)–k–(hydrophobic)–x–x–(hydrophobic)– (polar)–(hydrophobic)–(polar)–(hydrophobic)] was identified and used to screen the TRAF6/p62 interactome composed of 155 proteins, that were either TRAF6 or p62 interactors, or a negative dataset, composed of 54 proteins with no known association to either TRAF6 or p62. NRIF (K19), TrkA (K485), TrkB (K811), TrkC (K602 and K815), NTRK2 (K828), NTRK3 (K829) and MBP (K169) were found to possess a perfect match for the amino acid consensus motif for TRAF6/p62 ubiquitination. Subsequent analyses revealed that this motif was biased to the C-terminal regions of the protein (nearly 50% the sites), and had preference for loops (~50%) and helices (~37%) over beta-strands (15% or less). In addition, the motif was observed to be in regions that were highly solvent accessible (nearly 90%). Our findings suggest that specific Lysines may be selected for ubiquitination based upon an embedded code defined by a specific amino acid motif with structural determinants. Collectively, our results reveal an unappreciated role for the scaffold protein in targeting ubiquitination. The findings described herein could be used to aid in identification of other E3/scaffold ubiquitination sites.
机译:这里介绍了一种新方法来预测E3泛素连接酶TRAF6的泛素化底物,考虑到其与支架蛋白SQSTM1 / p62的相互作用。定义为[–(疏水)–k–(疏水)–x–x–(疏水)–(极性)–(疏水)–(极性)–(疏水)]的新型TRAF6泛素化基序,并用于筛选由155种蛋白质组成的TRAF6 / p62相互作用基因组是TRAF6或p62相互作用物,或者是由54种蛋白质组成的阴性数据集,它们与TRAF6或p62没有已知关联。发现NRIF(K19),TrkA(K485),TrkB(K811),TrkC(K602和K815),NTRK2(K828),NTRK3(K829)和MBP(K169)与氨基酸的共有基序完美匹配TRAF6 / p62泛素化。随后的分析表明,该基序偏向蛋白质的C端区域(接近50%的位点),并且比β链(15%或25%)更喜欢环(〜50%)和螺旋(〜37%)。减)。另外,观察到图案位于溶剂可及性很高的区域(接近90%)。我们的发现表明,可以基于由具有结构决定簇的特定氨基酸基序定义的嵌入密码,选择特定的赖氨酸进行泛素化。总的来说,我们的结果揭示了支架蛋白在靶向泛素化中的未知作用。本文所述发现可用于帮助鉴定其他E3 /支架泛素化位点。

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