Li Yingxi, Wang Weiwei, Wang Wei, Zhang Xing, Chen Jinghua, Gao Haichun
State Key Laboratory for Vegetation Structure, Function and Construction (VegLab), Institute of Microbiology and College of Life Sciences, Zhejiang University, Hangzhou, 310058, China.
Center of Cryo Electron Microscopy, Zhejiang University School of Medicine, Hangzhou, 310058, China.
Adv Sci (Weinh). 2025 May;12(20):e2409957. doi: 10.1002/advs.202409957. Epub 2025 Apr 1.
Iron-storage bacterioferritins (Bfrs), existing in either homo- or hetero-multimeric form, play a crucial role in iron homeostasis. While the structure and function of homo-multimeric bacterioferritins (homo-Bfrs) have been extensively studied, little is known about the assembly, distinctive characteristics, or evolutionary adaptations of hetero-multimeric bacterioferritins (hetero-Bfrs). Here, the cryo-EM structure and functional characterization of a bacterial hetero-Bfr (SoBfr12) are reported. Compared to homo-Bfrs, although SoBfr12 exhibits a conserved spherical cage-like dodecahedron, its pores through which ions traverse exhibit substantially increased diversity. Importantly, the heterogeneity has significant impacts on sites for ion entry, iron oxidation, and reduction. Moreover, evolutionary analyses reveal that hetero-Bfrs may represent a new class within the Bfr subfamily, consisting of two different types that may have evolved from homo-Bfr through tandem duplication and directly from ferritin (Ftn) via dispersed duplication, respectively. These results reveal remarkable structural and functional features of a hetero-Bfr, enabling the rational design of nanocages for enhanced iron-storing efficiency and for other specific purposes, such as drug delivery vehicles and nanozymes.
铁储存细菌铁蛋白(Bfrs)以同多聚体或异多聚体形式存在,在铁稳态中起关键作用。虽然同多聚体细菌铁蛋白(同型Bfrs)的结构和功能已得到广泛研究,但关于异多聚体细菌铁蛋白(异型Bfrs)的组装、独特特征或进化适应性却知之甚少。在此,报道了一种细菌异型Bfr(SoBfr12)的冷冻电镜结构和功能表征。与同型Bfrs相比,尽管SoBfr12呈现出保守的球形笼状十二面体,但其供离子穿过的孔表现出显著增加的多样性。重要的是,这种异质性对离子进入位点、铁氧化和还原有重大影响。此外,进化分析表明,异型Bfrs可能代表Bfr亚科中的一个新类别,由两种不同类型组成,它们可能分别通过串联重复从同型Bfr进化而来,以及通过分散重复直接从铁蛋白(Ftn)进化而来。这些结果揭示了异型Bfr的显著结构和功能特征,有助于合理设计纳米笼以提高铁储存效率以及用于其他特定目的,如药物递送载体和纳米酶。