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Direct observation of iron-induced conformational changes of mitochondrial DNA by high-resolution field-emission in-lens scanning electron microscopy.

机译:高分辨率场发射透镜内扫描电子显微镜直接观察铁诱导的线粒体DNA构象变化。

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摘要

When respiring rat liver mitochondria are incubated in the presence of Fe(III) gluconate, their DNA (mtDNA) relaxes from the supercoiled to the open circular form dependent on the iron dose. Anaerobiosis or antioxidants fail to completely inhibit the unwinding. High-resolution field-emission in-lens scanning electron microscopy imaging, in concert with backscattered electron detection, pinpoints nanometer-range iron colloids bound to mtDNA isolated from iron-exposed mitochondria. High-resolution field-emission in-lens scanning electron microscopy with backscattered electron detection imaging permits simultaneous detailed visual analysis of DNA topology, iron dose-dependent mtDNA unwinding, and assessment of iron colloid formation on mtDNA strands.
机译:当呼吸的大鼠肝线粒体在葡萄糖酸Fe(III)存在下温育时,取决于铁的剂量,它们的DNA(mtDNA)从超螺旋松弛成开放的环状形式。厌氧菌或抗氧化剂不能完全抑制展开。高分辨率场发射透镜内扫描电子显微镜成像与背向散射电子检测相结合,可精确定位与从暴露于铁的线粒体中分离的mtDNA结合的纳米级铁胶体。具有反向散射电子检测成像功能的高分辨率场发射透镜内扫描电子显微镜可同时进行详细的DNA拓扑结构可视化分析,铁剂量依赖性mtDNA放卷以及评估mtDNA链上铁胶体的形成。

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