Technische Universität Berlin, Institut für Chemie/Biokatalyse, Berlin, Germany.
Technische Universität Berlin, Institut für Chemie / Physikalische Chemie, Berlin, Germany.
Protein Sci. 2023 Jul;32(7):e4705. doi: 10.1002/pro.4705.
Orthogonal translation is an efficient tool that provides many valuable spectral probes capable of covering different parts of the electromagnetic spectrum and thus enabling parameterization of various structural and dynamic phenomena in proteins. In this context, nitrile-containing tryptophan analogs are very useful probes to study local electrostatics and hydrogen bonding in both rigid and dynamic environments. Here, we report a semi-rational approach to engineer a tyrosyl-tRNA synthetase (TyrRS) variant of Methanocaldococcus jannaschii capable of incorporating 5-cyanotryptophan (5CNW) via orthogonal translation. We combined one round of the well-established positive selection system with saturation mutagenesis at preselected TyrRS positions, resulting in a novel 5CNW-specific enzyme that also exhibits high substrate tolerance to other aromatic noncanonical amino acids. We demonstrated the utility of our orthogonal pair by inserting 5CNW into the cyanobacteriochrome Slr1393g3, a bilin-binding photosensor of the phytochrome superfamily. The nitrile (CN) group of the inserted 5CNW provides non-invasive labeling in the local structural context while yielding information on local electrostatics and hydrogen bonding by IR spectroscopy. 5CNW is a versatile probe that can be used for both static and dynamic measurements.
正交翻译是一种有效的工具,它提供了许多有价值的光谱探针,能够覆盖电磁光谱的不同部分,从而能够对蛋白质中的各种结构和动态现象进行参数化。在这方面,含腈基色氨酸类似物是研究刚性和动态环境中局部静电和氢键的非常有用的探针。在这里,我们报告了一种半理性的方法来工程化 Methanocaldococcus jannaschii 的酪氨酸 tRNA 合成酶 (TyrRS) 变体,使其能够通过正交翻译掺入 5-氰基色氨酸 (5CNW)。我们将一轮成熟的正选择系统与在预先选择的 TyrRS 位置进行饱和突变相结合,得到了一种新型的 5CNW 特异性酶,该酶对其他芳香非规范氨基酸也表现出高底物耐受性。我们通过将 5CNW 插入到拟南芥光合色素超家族的双氢结合光敏色素 Slr1393g3 中,证明了我们正交对的实用性。插入的 5CNW 的腈 (CN) 基团在局部结构环境中提供了非侵入性标记,同时通过红外光谱提供了关于局部静电和氢键的信息。5CNW 是一种多功能探针,可用于静态和动态测量。