Augusto Ingrid, Lemos Moara, Girard-Dias Wendell, Oliveira Filho José de Anchieta, Pascutti Pedro G, de Souza Wanderley, Miranda Kildare
Laboratório de Ultraestrutura Celular Hertha Meyer, Centro de Pesquisa em Medicina de Precisão, Instituto de Biofísica Carlos Chagas Filho and Centro Nacional de Biologia Estrutural e Bioimagem, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
Instituto Nacional de Ciência e Tecnologia em Biologia Estrutural e Bioimagem-Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
mBio. 2025 May 14;16(5):e0166224. doi: 10.1128/mbio.01662-24. Epub 2025 Apr 8.
Cryo-electron microscopy (cryo-EM) has revolutionized structural biology by enabling high-resolution, near-native visualization of macromolecular structures and entire cells. Its application to etiologic agents of diseases is an expanding field, particularly for those caused by viruses or unicellular eukaryotes, such as protozoan parasites and fungi. This review focuses on acidocalcisomes-ion-rich, multifunctional organelles essential for cell physiology and survival in several pathogens. The structure and function of these organelles are examined through a range of electron microscopy techniques, using as a model. The advantages and limitations of the methods employed to study acidocalcisome morphofunctional organization-such as chemical fixation, plunge and high-pressure freezing, cryo-electron microscopy of vitrified sections (CEMOVIS), freeze-drying, freeze substitution, tomography, and microanalysis using X rays and inelastic scattered electrons-are discussed, alongside their contributions to our current understanding of acidocalcisome structure and function. Recent advances in cryo-EM and its potential to address longstanding questions and fill existing gaps in our understanding of parasite ion mobilization mechanisms and physiology are also discussed.
冷冻电子显微镜(cryo-EM)通过实现对大分子结构和整个细胞的高分辨率、近天然状态的可视化,给结构生物学带来了变革。它在疾病病原体方面的应用是一个不断扩展的领域,尤其适用于由病毒或单细胞真核生物引起的疾病,如原生动物寄生虫和真菌。本综述聚焦于酸性钙小体——对几种病原体的细胞生理和存活至关重要的富含离子的多功能细胞器。以 为模型,通过一系列电子显微镜技术研究了这些细胞器的结构和功能。讨论了用于研究酸性钙小体形态功能组织的方法的优缺点,如化学固定、骤冷和高压冷冻、玻璃化切片的冷冻电子显微镜(CEMOVIS)、冷冻干燥、冷冻置换、断层扫描以及使用X射线和非弹性散射电子的微分析,以及它们对我们目前对酸性钙小体结构和功能理解的贡献。还讨论了冷冻电子显微镜的最新进展及其解决长期存在的问题和填补我们在寄生虫离子转运机制和生理学理解方面现有空白的潜力。