Kynast Josef Paul, Höcker Birte
Department of Biochemistry, University of Bayreuth, Bayreuth, Germany.
Biodes Res. 2023 May 4;5:0011. doi: 10.34133/bdr.0011. eCollection 2023.
A key functionality of proteins is based on their ability to form interactions with other proteins or peptides. These interactions are neither easily described nor fully understood, which is why the design of specific protein-protein interaction interfaces remains a challenge for protein engineering. We recently developed the software ATLIGATOR to extract common interaction patterns between different types of amino acids and store them in a database. The tool enables the user to better understand frequent interaction patterns and find groups of interactions. Furthermore, frequent motifs can be directly transferred from the database to a user-defined scaffold as a starting point for the engineering of new binding capabilities. Since three-dimensional visualization is a crucial part of ATLIGATOR, we created ATLIGATOR web-a web server offering an intuitive graphical user interface (GUI) available at https://atligator.uni-bayreuth.de. This new interface empowers users to apply ATLIGATOR by providing easy access with having all parts directly connected. Moreover, we extended the web by a design functionality so that, overall, ATLIGATOR web facilitates the use of ATLIGATOR with a more intuitive UI and advanced design options.
蛋白质的一个关键功能基于它们与其他蛋白质或肽形成相互作用的能力。这些相互作用既不易描述也未被完全理解,这就是为什么特定蛋白质 - 蛋白质相互作用界面的设计仍然是蛋白质工程面临的一个挑战。我们最近开发了软件ATLIGATOR,以提取不同类型氨基酸之间的常见相互作用模式并将其存储在数据库中。该工具使用户能够更好地理解频繁出现的相互作用模式并找到相互作用组。此外,频繁出现的基序可以直接从数据库转移到用户定义的支架上,作为设计新结合能力的起点。由于三维可视化是ATLIGATOR的关键部分,我们创建了ATLIGATOR网络服务器——一个提供直观图形用户界面(GUI)的网络服务器,可在https://atligator.uni-bayreuth.de上使用。这个新界面通过直接连接所有部分提供便捷访问,使用户能够应用ATLIGATOR。此外,我们通过设计功能扩展了该网络,因此总体而言,ATLIGATOR网络通过更直观的用户界面和高级设计选项促进了ATLIGATOR的使用。