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Crystal structures of Ryanodine Receptor reveal dantrolene and azumolene interactions guiding inhibitor development

Nature Communications. 2025-11; 
Hadiatullah Hadiatullah, Lianyun Lin, Zhiyan Wang, Rajamanikandan Sundarraj, Qing Wang, Xinru Lai, Nagomi Kurebayashi, Takuya Kobayashi, Toshiko Yamazawa, Yu Seby Chen, Wenlan Wang, Hongxia Zhao, Yiqing Yin, Takashi Murayama, Filip Van Petegem, Zhiguang Yuchi State Key Laboratory of Synthetic Biology; Frontiers Science Center for Synthetic Biology; Tianjin Key Laboratory for Modern Drug Delivery & High-Efficiency; School of Pharmaceutical Science and Technology, Faculty of Medicine, Tianjin University
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Abstract

The ryanodine receptor (RyR) is a critical drug target, yet dantrolene (DAN) remains the only FDA-approved inhibitor, limited by hepatotoxicity and unsuitable for chronic use. To guide improved inhibitor development, we determine high-resolution crystal structures of the RyR Repeat12 (R12) domain bound to DAN, its analog azumolene (AZU), and adenine nucleotides (AMP-PCP or ADP). DAN/AZU and nucleotides bind cooperatively to a pseudosymmetric cleft, with key interactions involving Trp880 and Trp994. Binding induces a clamshell-like closure of the R12 domain. Isothermal titration calorimetry (ITC) reveals higher affinity in the presence of nucleotides and lower affinity for RyR2 due to nearby substitutions. Struc... More

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