Dwiranti Astari, Hamano Tohru, Takata Hideaki, Nagano Shoko, Guo Hongxuan, Onishi Keiko, Wako Toshiyuki, Uchiyama Susumu, Fukui Kiichi
Laboratory of Dynamic Cell Biology, Department of Biotechnology, Graduate School of Engineering, Osaka University, Yamadaoka, Suita, Osaka 565-0871, Japan.
Surface Characterization Group, Nano Characterization Unit, Advanced Key Technologies Division, National Institute for Materials Science, Sengen, Tsukuba, Ibaraki 305-0047, Japan.
Microsc Microanal. 2014 Feb;20(1):184-8. doi: 10.1017/S1431927613013792. Epub 2013 Nov 14.
One of the few conclusions known about chromosome structure is that Mg2+ is required for the organization of chromosomes. Scanning electron microscopy is a powerful tool for studying chromosome morphology, but being nonconductive, chromosomes require metal/carbon coating that may conceal information about the detailed surface structure of the sample. Helium ion microscopy (HIM), which has recently been developed, does not require sample coating due to its charge compensation system. Here we investigated the structure of isolated human chromosomes under different Mg2+ concentrations by HIM. High-contrast and resolution images from uncoated samples obtained by HIM enabled investigation on the effects of Mg2+ on chromosome structure. Chromatin fiber information was obtained more clearly with uncoated than coated chromosomes. Our results suggest that both overall features and detailed structure of chromatin are significantly affected by different Mg2+ concentrations. Chromosomes were more condensed and a globular structure of chromatin with 30 nm diameter was visualized with 5 mM Mg2+ treatment, while 0 mM Mg2+ resulted in a less compact and more fibrous structure 11 nm in diameter. We conclude that HIM is a powerful tool for investigating chromosomes and other biological samples without requiring metal/carbon coating.
关于染色体结构已知的少数结论之一是,染色体的组织需要Mg2+。扫描电子显微镜是研究染色体形态的有力工具,但由于染色体不导电,需要进行金属/碳涂层处理,这可能会掩盖有关样品详细表面结构的信息。最近开发的氦离子显微镜(HIM)由于其电荷补偿系统而不需要样品涂层。在这里,我们通过HIM研究了不同Mg2+浓度下分离的人类染色体的结构。HIM获得的未涂层样品的高对比度和高分辨率图像能够研究Mg2+对染色体结构的影响。未涂层的染色体比涂层的染色体更清晰地获得了染色质纤维信息。我们的结果表明,不同的Mg2+浓度对染色质的整体特征和详细结构都有显著影响。用5 mM Mg2+处理时,染色体更加浓缩,可见直径为30 nm的染色质球状结构,而0 mM Mg2+则导致结构较松散,直径为11 nm的纤维状结构更多。我们得出结论,HIM是一种无需金属/碳涂层即可研究染色体和其他生物样品的有力工具。