Suppr超能文献

解析:的神秘PilY1:一项分析。 你提供的原文中“Deciphering the enigmatic PilY1 of : An analysis.”存在信息不完整的情况,冒号前缺少具体所指内容。以上译文是基于现有内容尽量准确翻译的。

Deciphering the enigmatic PilY1 of : An analysis.

作者信息

Hernández-Sánchez Araceli, Páez-Pérez Edgar D, Alfaro-Saldaña Elvia, García-Meza J Viridiana

机构信息

Geomicrobiología, Metalurgia, UASLP, Sierra Leona 550, San Luis Potosí, 78210, SLP, Mexico.

出版信息

Biochem Biophys Rep. 2024 Jul 26;39:101797. doi: 10.1016/j.bbrep.2024.101797. eCollection 2024 Sep.

Abstract

Thirty years since the first report on the PilY1 protein in bacteria, only the C-terminal domain has been crystallized; there is no study in which the N-terminal domain, let alone the complete protein, has been crystallized. In our laboratory, we are interested in characterizing the Type IV Pili (T4P) of . We performed an characterization of PilY1 and other pilins of the T4P of this acidophilic bacterium. characterization is crucial for understanding how proteins adapt and function under extreme conditions. By analyzing the primary and secondary structures of proteins through computational methods, researchers can gain valuable insights into protein stability, key structural features, and unique amino acid compositions that contribute to resilience in harsh environments. Here, it is presented a description of the particularities of PilY1 through predictor software and homology data. Our results suggest that PilY1 from may have the same role as has been described for other PilY1 associated with T4P in neutrophilic bacteria; also, its C-terminal interacts (interface interaction) with the minor pilins PilX, PilW and PilV. The N-terminal region comprises domains such as the vWA and the MIDAS, involved in signaling, ligand-binding, and protein-protein interaction. In fact, the vWA domain has intrinsically disordered regions that enable it to maintain its structure over a wide pH range, not only at extreme acidity to which is adapted. The results obtained helped us design the correct methodology for its heterologous expression. This allowed us partially experimentally characterize it by obtaining the N-terminal domain recombinantly and evaluating its acid stability through fluorescence spectroscopy. The data suggest that it remains stable across pH changes. This work thus provides guidance for the characterization of extracellular proteins from extremophilic organisms.

摘要

自首次报道细菌中的PilY1蛋白以来的三十年里,只有C末端结构域被结晶;尚无关于N末端结构域被结晶的研究,更不用说完整蛋白质的结晶了。在我们实验室,我们对嗜酸性细菌的IV型菌毛(T4P)进行表征。我们对这种嗜酸性细菌T4P的PilY1和其他菌毛蛋白进行了表征。表征对于理解蛋白质在极端条件下如何适应和发挥功能至关重要。通过计算方法分析蛋白质的一级和二级结构,研究人员可以深入了解蛋白质稳定性、关键结构特征以及有助于在恶劣环境中保持韧性的独特氨基酸组成。在此,通过预测软件和同源数据对嗜酸性细菌PilY1的特性进行了描述。我们的结果表明,嗜酸性细菌的PilY1可能具有与嗜中性细菌中与T4P相关的其他PilY1所描述的相同作用;此外,其C末端与次要菌毛蛋白PilX、PilW和PilV相互作用(界面相互作用)。N末端区域包含vWA和MIDAS等结构域,参与信号传导、配体结合和蛋白质-蛋白质相互作用。事实上,vWA结构域具有内在无序区域,使其不仅能在嗜酸性细菌所适应的极端酸性条件下,而且能在很宽的pH范围内维持其结构。所获得的结果帮助我们设计了其异源表达的正确方法。这使我们能够通过重组获得N末端结构域并通过荧光光谱评估其酸稳定性,从而对其进行部分实验表征。数据表明它在pH变化时保持稳定。因此,这项工作为嗜极生物细胞外蛋白质的表征提供了指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/249a/11331964/daf07043c2d0/gr1.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验