Liu Zexian, Ma Qian, Cao Jun, Gao Xinjiao, Ren Jian, Xue Yu
University of Science & Technology of China, Hefei, Anhui, China.
Mol Biosyst. 2011 Oct;7(10):2737-40. doi: 10.1039/c1mb05217a. Epub 2011 Aug 18.
Recent experiments revealed the prokaryotic ubiquitin-like protein (PUP) to be a signal for the selective degradation of proteins in Mycobacterium tuberculosis (Mtb). By covalently conjugating the PUP, pupylation functions as a critical post-translational modification (PTM) conserved in actinomycetes. Here, we designed a novel computational tool of GPS-PUP for the prediction of pupylation sites, which was shown to have a promising performance. From small-scale and large-scale studies we collected 238 potentially pupylated substrates for which the exact pupylation sites were still not determined. As an example application, we predicted ∼85% of these proteins with at least one potential pupylation site. Furthermore, through functional analysis, we observed that pupylation can target various substrates so as to regulate a broad array of biological processes, such as the response to stress, sulfate and proton transport, and metabolism. The prediction and analysis results prove to be useful for further experimental investigation. The GPS-PUP 1.0 is freely available at: .
最近的实验表明,原核泛素样蛋白(PUP)是结核分枝杆菌(Mtb)中蛋白质选择性降解的信号。通过共价结合PUP,pupylation作为一种在放线菌中保守的关键翻译后修饰(PTM)发挥作用。在此,我们设计了一种用于预测pupylation位点的新型计算工具GPS-PUP,其表现出良好的性能。通过小规模和大规模研究,我们收集了238种潜在的pupylated底物,其确切的pupylation位点仍未确定。作为一个示例应用,我们预测了这些蛋白质中约85%至少有一个潜在的pupylation位点。此外,通过功能分析,我们观察到pupylation可以靶向各种底物,从而调节广泛的生物学过程,如应激反应、硫酸盐和质子运输以及代谢。预测和分析结果证明对进一步的实验研究有用。GPS-PUP 1.0可在以下网址免费获取: 。