Division of Structural Biology, Wellcome Centre for Human Genetics, University of Oxford, Oxford, UK.
CAS Key Laboratory of Infection and Immunity, National Laboratory of Macromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.
Nat Commun. 2024 Nov 27;15(1):10304. doi: 10.1038/s41467-024-53745-w.
The cryo-electron microscopy (cryoEM) method has enabled high-resolution structure determination of numerous biomolecules and complexes. Nevertheless, cryoEM sample preparation of challenging proteins and complexes, especially those with low abundance or with preferential orientation, remains a major hurdle. We developed an affinity-grid method employing monodispersed single particle streptavidin on a lipid monolayer to enhance particle absorption on the grid surface and alleviate sample exposure to the air-water interface. Using this approach, we successfully enriched the Thermococcus kodakarensis mini-chromosome maintenance complex 3 (MCM3) on cryoEM grids through biotinylation and resolved its structure. We further utilized this affinity method to tether the biotin-tagged dsDNA to selectively enrich a stable MCM3-ATP-dsDNA complex for cryoEM structure determination. Intriguingly, both MCM3 apo and dsDNA bound structures exhibit left-handed open spiral conformations, distinct from other reported MCM structures. The large open gate is sufficient to accommodate a dsDNA which could potentially be melted. The value of mspSA affinity method was further demonstrated by mitigating the issue of preferential angular distribution of HIV-1 capsid protein hexamer and RNA polymerase II elongation complex from Saccharomyces cerevisiae.
低温电子显微镜(cryoEM)方法已经能够实现许多生物分子和复合物的高分辨率结构测定。然而,对于具有挑战性的蛋白质和复合物的 cryoEM 样品制备,特别是那些丰度低或具有优先取向的蛋白质和复合物,仍然是一个主要的障碍。我们开发了一种亲和网格方法,该方法使用单分散的单层脂质上的单分散性链霉亲和素来增强颗粒在网格表面上的吸收,并减轻样品与气-水界面的暴露。使用这种方法,我们通过生物素化成功地在 cryoEM 网格上浓缩了 Thermococcus kodakarensis 小型染色体维持复合物 3(MCM3),并解析了其结构。我们进一步利用这种亲和方法将生物素标记的 dsDNA 连接到选择性富集稳定的 MCM3-ATP-dsDNA 复合物上,用于 cryoEM 结构测定。有趣的是,MCM3 脱辅基和 dsDNA 结合结构均呈现左手开螺旋构象,与其他报道的 MCM 结构不同。大的开口门足以容纳可能被融化的 dsDNA。mspSA 亲和方法的价值还通过减轻 HIV-1 衣壳蛋白六聚体和酿酒酵母 RNA 聚合酶 II 延伸复合物的优先角分布问题得到了进一步证明。