Nonsense mutations are associated with numerous and diverse pathologies, yet effective treatment strategies remain elusive. A promising approach to combat these conditions involves the use of aminoglycosides, particularly in combination with stop-codon read-through enhancers, for developing drugs that can rescue the production of full-length proteins. Using X-ray crystallography and single-particle cryo-EM, we obtained structures of the eukaryotic ribosome in complexes with several aminoglycosides (geneticin G418, paromomycin, and hygromycin B) and the antimalarial drug mefloquine (MFQ), which has also been identified as a read-through enhancer. Our study reveals a binding site of MFQ, which holds significant promise for the development of therapies targeting premature termination codon-related genetic and oncological diseases. The results underscore the crucial role of the bridge B7b/c in mediating the effects of MFQ on subunit rotation dynamics. Through a comprehensive analysis of the interactions between the drugs and the eukaryotic ribosome, we propose a unifying hypothesis for read-through enhancement by small molecules, highlighting the role of decoding center rearrangements and intersubunit rotation dynamics.
Mechanism of read-through enhancement by aminoglycosides and mefloquine.
氨基糖苷类和甲氟喹增强通读作用的机制
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作者:Kolosova Olga, Zgadzay Yury, Stetsenko Artem, Sukhinina Anastasia P, Atamas Anastasia, Validov Shamil, Rogachev Andrey, Usachev Konstantin, Jenner Lasse, Dmitriev Sergey E, Yusupova Gulnara, Guskov Albert, Yusupov Marat
| 期刊: | Proceedings of the National Academy of Sciences of the United States of America | 影响因子: | 9.100 |
| 时间: | 2025 | 起止号: | 2025 Apr 29; 122(17):e2420261122 |
| doi: | 10.1073/pnas.2420261122 | 研究方向: | 其它 |
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