Twinkle is a mitochondrial replicative helicase which can self-load onto and unwind mitochondrial DNA. Nearly 60 mutations on Twinkle have been linked to human mitochondrial diseases. Using cryo-electron microscopy (cryo-EM) and high-speed atomic force microscopy (HS-AFM), we obtained the atomic-resolution structure of a vertebrate Twinkle homolog with DNA and captured in real-time how Twinkle is self-loaded onto DNA. Our data highlight the important role of the non-catalytic N-terminal domain of Twinkle. The N-terminal domain directly contacts the C-terminal helicase domain, and the contact interface is a hotspot for disease-related mutations. Mutations at the interface destabilize Twinkle hexamer and reduce helicase activity. With HS-AFM, we observed that a highly dynamic Twinkle domain, which is likely to be the N-terminal domain, can protrude â¼5 nm to transiently capture nearby DNA and initialize Twinkle loading onto DNA. Moreover, structural analysis and subunit doping experiments suggest that Twinkle hydrolyzes ATP stochastically, which is distinct from related helicases from bacteriophages.
Structural and dynamic basis of DNA capture and translocation by mitochondrial Twinkle helicase.
线粒体 Twinkle 解旋酶捕获和转运 DNA 的结构和动力学基础
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作者:Li Zhuo, Kaur Parminder, Lo Chen-Yu, Chopra Neil, Smith Jamie, Wang Hong, Gao Yang
| 期刊: | Nucleic Acids Research | 影响因子: | 13.100 |
| 时间: | 2022 | 起止号: | 2022 Nov 11; 50(20):11965-11978 |
| doi: | 10.1093/nar/gkac1089 | 研究方向: | 免疫/内分泌 |
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