Analysis of cellular ultrastructure dynamics and metal ions’ fate can provide insights into the interaction between living organisms and metal ions. Here, we directly visualize the distribution of biogenic metallic aggregates, ion-induced subcellular reorganization, and the corresponding regulation effect in yeast by the near-native 3D imaging approach, cryo-soft X-ray tomography (cryo-SXT). By comparative 3D morphometric assessment, we observe the gold ions disrupting cellular organelle homeostasis, resulting in noticeable distortion and folding of vacuoles, apparent fragmentation of mitochondria, extreme swelling of lipid droplets, and formation of vesicles. The reconstructed 3D architecture of treated yeast demonstrates ∼65 of Au-rich sites in the periplasm, a comprehensive quantitative assessment unobtained by TEM. We also observe some AuNPs in rarely identified subcellular sites, namely, mitochondria and vesicles. Interestingly, the amount of gold deposition is positively correlated with the volume of lipid droplets. Shifting the external starting pH to near-neutral results in the reversion of changes in organelle architectures, boosting the amount of biogenic Au nanoparticles, and increasing cell viability. This study provides a strategy to analyze the metal ions–living organism interaction from subcellular architecture and spatial localization perspectives.
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机译:对细胞超微结构动力学和金属离子命运的分析可以深入了解生物体与金属离子之间的相互作用。在这里,我们通过近天然 3D 成像方法冷冻软 X 射线断层扫描 (cryo-SXT) 直接可视化酵母中生物金属聚集体的分布、离子诱导的亚细胞重组以及相应的调控作用。通过比较 3D 形态学评估,我们观察到金离子破坏细胞器稳态,导致液泡明显变形和折叠、线粒体明显碎裂、脂滴极度膨胀和囊泡形成。处理过的酵母的重建 3D 结构显示周质中 ∼65% 的富金位点,这是 TEM 无法获得的综合定量评估。我们还在很少发现的亚细胞位点(即线粒体和囊泡)中观察到一些AuNPs。有趣的是,金沉积量与脂滴体积呈正相关。将外部起始pH值转变为接近中性会导致细胞器结构变化的逆转,增加生物金纳米颗粒的数量,并增加细胞活力。本研究从亚细胞结构和空间定位的角度分析金属离子与生物体的相互作用。
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