Salcedo-Tacuma David, Howells Giovanni, Mchose Coleman, Gutierrez-Diaz Aimer, Schupp Jane, Smith David M
Department of Biochemistry and Molecular Medicine, West Virginia University School of Medicine, 4 Medical Center Dr., Morgantown, WV USA.
Department of Plant Biology, Uppsala BioCenter, Swedish University of Agricultural Sciences, Uppsala 75007, Sweden.
bioRxiv. 2024 Jun 9:2024.06.08.598080. doi: 10.1101/2024.06.08.598080.
The proteasome plays a crucial role in cellular homeostasis by degrading misfolded, damaged, or unnecessary proteins. Understanding the regulatory mechanisms of proteasome activity is vital, particularly the interaction with activators containing the hydrophobic-tyrosine-any amino acid (HbYX) motif. Here, we present ProEnd, a comprehensive database designed to identify and catalog HbYX motif-containing proteins across the tree of life. Using a simple bioinformatics pipeline, we analyzed approximately 73 million proteins from 22,000 reference proteomes in the UniProt/SwissProt database. Our findings reveal the widespread presence of HbYX motifs in diverse organisms, highlighting their evolutionary conservation and functional significance. Notably, we observed an interesting prevalence of these motifs in viral proteomes, suggesting strategic interactions with the host proteasome. As validation two novel HbYX proteins found in this database were tested and found to directly interact with the proteasome. ProEnd's extensive dataset and user-friendly interface enable researchers to explore the potential proteasomal regulator landscape, generating new hypotheses to advance proteasome biology. This resource is set to facilitate the discovery of novel therapeutic targets, enhancing our approach to treating diseases such as neurodegenerative disorders and cancer. Link: http://proend.org/.
蛋白酶体通过降解错误折叠、受损或不必要的蛋白质在细胞内稳态中发挥关键作用。了解蛋白酶体活性的调控机制至关重要,尤其是与含有疏水酪氨酸-任意氨基酸(HbYX)基序的激活剂的相互作用。在此,我们展示了ProEnd,这是一个全面的数据库,旨在识别和编目整个生命树中含有HbYX基序的蛋白质。使用简单的生物信息学流程,我们分析了来自UniProt/SwissProt数据库中22000个参考蛋白质组的约7300万个蛋白质。我们的研究结果揭示了HbYX基序在多种生物中的广泛存在,突出了它们的进化保守性和功能重要性。值得注意的是,我们在病毒蛋白质组中观察到这些基序的有趣普遍性,表明它们与宿主蛋白酶体存在策略性相互作用。作为验证,对该数据库中发现的两种新型HbYX蛋白进行了测试,发现它们与蛋白酶体直接相互作用。ProEnd广泛的数据集和用户友好的界面使研究人员能够探索潜在的蛋白酶体调节因子格局,产生新的假设以推动蛋白酶体生物学发展。该资源将有助于发现新的治疗靶点,改进我们治疗神经退行性疾病和癌症等疾病的方法。链接:http://proend.org/