| Literature DB >> 26942219 |
Xiaomin Li1,2, Hongli Feng1, Jianguo Zhang3, Lei Sun3, Ping Zhu1.
Abstract
The presence and folding pattern of chromatin in eukaryotic cells remain elusive and controversial. In this study, we prepared ultra-thin sections of Hela cells with three different fixation and sectioning methods, i.e., chemical fixation, high pressure freezing with freeze substitution, and cryo-ultramicrotomy with SEM-FIB (focused ion beam), and analyzed in vivo architecture of chromatin fibers in Hela nuclei with electron tomography technology. The results suggest that the chromatin fibers in eukaryotic Hela cells are likely organized in an architecture with a diameter of about 30 nm.Entities:
Keywords: Chemical fixation; Chromatin fiber; Cryo-ultramicrotomy; DualBeam-FIB; Electron tomography; Hela cell; High-pressure freezing
Year: 2015 PMID: 26942219 PMCID: PMC4762132 DOI: 10.1007/s41048-015-0009-9
Source DB: PubMed Journal: Biophys Rep ISSN: 2364-3439
Fig. 1EM micrographs of conventional chemically fixed ultrathin sections of Hela cells and isolated nuclei. A, B Low magnification images of Hela cells. The nuclear membrane (NM) of nucleus (Nu) is indicated and the nucleolus (NOR) can be observed. C Enlarged view of the region highlighted in (B). The chromatin-like fibers with longitudinal section and cross section orientations are indicated by red boxes and red circles, respectively. The distinguishable nucleosome-like densities are indicated by yellow arrowheads. D EM image of isolated nuclei ultrathin section. The chromatin-like fibers and nucleosome-like densities are highlighted as in C
Fig. 2EM micrographs of isolated Hela nuclei with high-pressure freezing and freeze substitution. A Low magnification image of sectioned nuclei. B Enlarged view of the region highlighted in A. Presumptive euchromatin and heterochromatin are indicated. C Chromatin-like fibers with longitudinal-section and cross-section orientations are indicated by red boxes and red circles, respectively
Fig. 3Characterization of chromatin fibers in the isolated Hela nuclei with high-pressure fixation. A The power spectrum diagram of the ultrathin-sectioned nuclei image shows peaks at ~11 and ~30 nm, respectively. B A tomogram slice of the ultrathin-sections after electron tomographic reconstruction. The chromatin-like fibers with longitudinal-section and cross-section orientations are indicated by red boxes and red circles, respectively. The fiber with two rows and twisting position is highlighted by yellow arrow. (Scale bar 100 nm)
Fig. 4Cryo-ultramicrotomy analysis of Hela cells and isolated nuclei. A SEM micrograph of frozen-hydrated Hela cells embedded in ice and attached to Mo-grid with a thin layer of holey carbon supporting film. The lamellas yielded by FIB milling are indicated by red arrows. B Low magnification EM micrograph of the lamella of isolated nuclei. The tilt axis of cryo-electron tomography (cryo-ET) data collection is marked with a dashed line. C TEM image of cryo-FIB milled Hela cells lamella, which shows distinguishable mitochondria (Mt), double nuclear membrane and cytoplasm. The inset image displays the presumptive ribosomes attached to nuclear membrane. D A tomographic slice of cryo-lamella of Hela cells after reconstruction. E Enlarged view of the region highlighted in B with a low dose exposure. F A tomographic slice of the nuclei cryo-lamella after reconstruction. Chromatin-like fibers with longitudinal-section and cross-section orientations are indicated by boxes and circles, respectively, in both E and F