Arimura Yasuhiro, Konishi Hide A, Funabiki Hironori
Laboratory of Chromosome and Cell Biology, The Rockefeller University, New York, NY 10065.
Current address: Basic Sciences Division, Fred Hutchinson Cancer Center, Seattle, WA, USA, 98109-1024.
bioRxiv. 2025 Jan 7:2024.01.21.576499. doi: 10.1101/2024.01.21.576499.
Cryo-EM single-particle analyses typically require target macromolecule concentration at 0.05~5.0 mg/ml, which is often difficult to achieve. Here, we devise Magnetic Isolation and Concentration (MagIC)-cryo-EM, a technique enabling direct structural analysis of targets captured on magnetic beads, thereby reducing the targets' concentration requirement to < 0.0005 mg/ml. Adapting MagIC-cryo-EM to a Chromatin Immunoprecipitation protocol, we characterized structural variations of the linker histone H1.8-associated nucleosomes that were isolated from interphase and metaphase chromosomes in egg extract. Combining Duplicated Selection To Exclude Rubbish particles (DuSTER), a particle curation method that excludes low signal-to-noise ratio particles, we also resolved the 3D cryo-EM structures of nucleoplasmin NPM2 co-isolated with the linker histone H1.8 and revealed distinct open and closed structural variants. Our study demonstrates the utility of MagIC-cryo-EM for structural analysis of scarce macromolecules in heterogeneous samples and provides structural insights into the cell cycle-regulation of H1.8 association to nucleosomes.
冷冻电镜单颗粒分析通常要求目标大分子浓度在0.05~5.0毫克/毫升之间,而这一浓度往往难以达到。在此,我们设计了磁分离与浓缩(MagIC)-冷冻电镜技术,该技术能够对捕获在磁珠上的目标进行直接结构分析,从而将目标浓度要求降低至<0.0005毫克/毫升。通过将MagIC-冷冻电镜技术应用于染色质免疫沉淀实验方案,我们对从卵提取物中的间期和中期染色体分离出的连接组蛋白H1.8相关核小体的结构变异进行了表征。结合重复选择以排除垃圾颗粒(DuSTER)这一排除低信噪比颗粒的颗粒筛选方法,我们还解析了与连接组蛋白H1.8共分离的核质蛋白NPM2的三维冷冻电镜结构,并揭示了不同的开放和封闭结构变体。我们的研究证明了MagIC-冷冻电镜技术在异质样品中稀缺大分子结构分析中的实用性,并为H1.8与核小体结合的细胞周期调控提供了结构见解。