Siwik Shea H, Wierzba Aleksandra J, Lennon Shelby R, Olenginski Lukasz T, Palmer Amy E, Batey Robert T
Department of Biochemistry, University of Colorado, Boulder, CO 80309-0596, United States.
BioFrontiers Institute, University of Colorado, Boulder, CO 80303-0596, United States.
Nucleic Acids Res. 2025 Jun 20;53(12). doi: 10.1093/nar/gkaf555.
Tagging RNAs with fluorogenic aptamers has enabled imaging of transcripts in living cells, revealing novel aspects of RNA metabolism and dynamics. While a diverse set of fluorogenic aptamers has been developed, a new generation of aptamers uses the ring-opening of spirocyclic rhodamine dyes to achieve robust performance in live mammalian cells. These fluorophores have two chemical states: a cell-permeable spirocyclic state and a fluorescent zwitterionic state. The SpyRho555 dye is mostly non-fluorescent in solution and becomes fluorescent in complex with the RhoBAST aptamer. To understand the basis for RhoBAST-SpyRho555 fluorogenicity, we have determined crystal structures of RhoBAST in complex with 5-carboxytetramethylrhodamine and a SpyRho555 analogue, MaP555. RhoBAST is organized by a perfect four-way junction that positions two loops to form the dye-binding pocket. The core of the ligand resides between a tri-adenine floor and a single guanine base, largely driven by π-stacking interactions. Importantly, the unpaired guanine interacts with the 3-position group of MaP555 to stabilize the open conformation, supported by mutagenesis data, and may play an active role in promoting the open conformation of the dye. This work has implications for the development of new fluorogenic aptamers with improved properties using structure-guided design approaches.
用荧光适配体标记RNA能够对活细胞中的转录本进行成像,揭示RNA代谢和动态变化的新方面。虽然已经开发出了各种各样的荧光适配体,但新一代适配体利用螺环罗丹明染料的开环反应在活的哺乳动物细胞中实现了强大的性能。这些荧光团有两种化学状态:一种是细胞可渗透的螺环状态,另一种是荧光两性离子状态。SpyRho555染料在溶液中大多无荧光,与RhoBAST适配体结合时会变得有荧光。为了理解RhoBAST-SpyRho555产生荧光的基础,我们确定了RhoBAST与5-羧基四甲基罗丹明和一种SpyRho555类似物MaP555形成复合物的晶体结构。RhoBAST由一个完美的四链体连接组织而成,该连接使两个环定位形成染料结合口袋。配体的核心位于一个三腺嘌呤层和一个单鸟嘌呤碱基之间,主要由π-堆积相互作用驱动。重要的是,未配对的鸟嘌呤与MaP555的3位基团相互作用以稳定开放构象,诱变数据支持这一点,并且它可能在促进染料的开放构象中发挥积极作用。这项工作对于使用结构导向设计方法开发具有改进性能的新型荧光适配体具有启示意义。