Kuschert Sarah, Stroet Martin, Chin Yanni Ka-Yan, Conibear Anne Claire, Jia Xinying, Lee Thomas, Bartling Christian Reinhard Otto, Strømgaard Kristian, Güntert Peter, Rosengren Karl Johan, Mark Alan Edward, Mobli Mehdi
Centre for Advanced Imaging, Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, Brisbane, QLD 4072, Australia.
School of Chemistry and Molecular Biosciences, The University of Queensland, Brisbane, QLD 4072, Australia.
Magn Reson (Gott). 2023 Feb 24;4(1):57-72. doi: 10.5194/mr-4-57-2023. eCollection 2023.
Peptides and proteins containing non-canonical amino acids (ncAAs) are a large and important class of biopolymers. They include non-ribosomally synthesised peptides, post-translationally modified proteins, expressed or synthesised proteins containing unnatural amino acids, and peptides and proteins that are chemically modified. Here, we describe a general procedure for generating atomic descriptions required to incorporate ncAAs within popular NMR structure determination software such as CYANA, CNS, Xplor-NIH and ARIA. This procedure is made publicly available via the existing Automated Topology Builder (ATB) server (https://atb.uq.edu.au, last access: 17 February 2023) with all submitted ncAAs stored in a dedicated database. The described procedure also includes a general method for linking of side chains of amino acids from CYANA templates. To ensure compatibility with other systems, atom names comply with IUPAC guidelines. In addition to describing the workflow, 3D models of complex natural products generated by CYANA are presented, including vancomycin. In order to demonstrate the manner in which the templates for ncAAs generated by the ATB can be used in practice, we use a combination of CYANA and CNS to solve the structure of a synthetic peptide designed to disrupt Alzheimer-related protein-protein interactions. Automating the generation of structural templates for ncAAs will extend the utility of NMR spectroscopy to studies of more complex biomolecules, with applications in the rapidly growing fields of synthetic biology and chemical biology. The procedures we outline can also be used to standardise the creation of structural templates for any amino acid and thus have the potential to impact structural biology more generally.
含有非标准氨基酸(ncAA)的肽和蛋白质是一类庞大且重要的生物聚合物。它们包括非核糖体合成肽、翻译后修饰的蛋白质、表达或合成的含非天然氨基酸的蛋白质,以及经过化学修饰的肽和蛋白质。在此,我们描述了一种通用程序,用于生成将ncAA纳入CYANA、CNS、Xplor-NIH和ARIA等常用核磁共振结构测定软件所需的原子描述。该程序通过现有的自动拓扑构建器(ATB)服务器(https://atb.uq.edu.au,最后访问时间:2023年2月17日)公开提供,所有提交的ncAA都存储在一个专用数据库中。所描述的程序还包括一种将CYANA模板中氨基酸侧链连接起来的通用方法。为确保与其他系统兼容,原子名称符合国际纯粹与应用化学联合会(IUPAC)的指导原则。除了描述工作流程外,还展示了由CYANA生成的复杂天然产物的三维模型,包括万古霉素。为了说明ATB生成的ncAA模板在实际中的使用方式,我们结合使用CYANA和CNS来解析一种旨在破坏阿尔茨海默病相关蛋白质-蛋白质相互作用的合成肽的结构。自动生成ncAA的结构模板将把核磁共振光谱的应用扩展到对更复杂生物分子的研究中,在合成生物学和化学生物学快速发展的领域中具有应用价值。我们概述的程序还可用于标准化任何氨基酸结构模板的创建,因此有可能更广泛地影响结构生物学。