Department of Biotechnology and Life Sciences, Sojo University, Kumamoto, Japan.
Department of Virology, Graduate School of Biomedical and Health Sciences, Hiroshima University, Hiroshima, Japan.
Chirality. 2024 Aug;36(8):e23700. doi: 10.1002/chir.23700.
Prokaryotes organize intracellular compartments with protein-based organelles called encapsulins. Encapsulins with icosahedral symmetry can encapsulate specific cargo proteins mediated by targeting peptides or encapsulation-mediating domains. Encapsulins have been used in eukaryotic cells for bioengineering, vaccine development, and nanoparticle alignment. Their versatility makes them attractive for research; however, detailed structural information on encapsulins is crucial for further applied research. However, cargo proteins are randomly oriented inside the icosahedral encapsulins. The random orientation of cargo proteins presents a challenge for structural analysis that relies on averaging processes such as x-ray crystallography and cryo-electron microscopy (cryo-EM) single-particle imaging. Therefore, we aimed to accurately estimate the secondary structure content and elucidate the structure of cargo proteins inside the particle by measuring the circular dichroism (CD) spectra using vacuum ultraviolet circular dichroism (VUVCD) spectroscopy. Thus, the structure of the cargo protein inside encapsulin was evaluated. This approach could potentially set a standard for evaluating cargo proteins inside particles in future applied research on encapsulins.
原核生物利用蛋白质细胞器——被膜蛋白囊泡,对细胞内区室进行组织。具有二十面体对称性的被膜蛋白囊泡可以通过靶向肽或囊泡形成介导结构域,对特定的货物蛋白进行包裹。被膜蛋白囊泡已经被应用于真核细胞的生物工程、疫苗开发和纳米颗粒的排列。由于其多功能性,被膜蛋白囊泡在研究中具有吸引力;然而,详细的被膜蛋白囊泡结构信息对于进一步的应用研究至关重要。然而,货物蛋白在二十面体的被膜蛋白囊泡内呈随机取向。货物蛋白的随机取向给依赖于平均化过程(如 X 射线晶体学和冷冻电镜(cryo-EM)单颗粒成像)的结构分析带来了挑战。因此,我们旨在通过使用真空紫外圆二色性(VUVCD)光谱法测量圆二色性(CD)光谱,准确估计货物蛋白的二级结构含量并阐明其在颗粒内的结构。从而评估货物蛋白在被膜蛋白囊泡内的结构。这种方法可能为未来被膜蛋白应用研究中评估颗粒内货物蛋白的结构提供标准。