Chromatin organization at the nuclear periphery as revealed by image analysis of structured illumination microscopy data
Language English Country Great Britain, England Media print-electronic
Document type Journal Article
PubMed
28476938
DOI
10.1242/jcs.198424
PII: jcs.198424
Knihovny.cz E-resources
- Keywords
- Chromatin, Histone modification, Image analysis, Nuclear pore complexes, Nucleus, Structured illumination microscopy,
- MeSH
- Cell Nucleus metabolism MeSH
- Chromatin chemistry metabolism MeSH
- Epigenesis, Genetic MeSH
- Microscopy, Fluorescence MeSH
- HeLa Cells MeSH
- Heterochromatin chemistry MeSH
- Histone Demethylases metabolism MeSH
- Histones chemistry MeSH
- Nuclear Envelope metabolism MeSH
- Nuclear Pore metabolism MeSH
- Humans MeSH
- Microscopy methods MeSH
- Software MeSH
- Check Tag
- Humans MeSH
- Publication type
- Journal Article MeSH
- Names of Substances
- Chromatin MeSH
- Heterochromatin MeSH
- Histone Demethylases MeSH
- Histones MeSH
- KDM1A protein, human MeSH Browser
The nuclear periphery (NP) plays a substantial role in chromatin organization. Heterochromatin at the NP is interspersed with active chromatin surrounding nuclear pore complexes (NPCs); however, details of the peripheral chromatin organization are missing. To discern the distribution of epigenetic marks at the NP of HeLa nuclei, we used structured illumination microscopy combined with a new MATLAB software tool for automatic NP and NPC detection, measurements of fluorescent intensity and statistical analysis of measured data. Our results show that marks for both active and non-active chromatin associate differentially with NPCs. The incidence of heterochromatin marks, such as H3K27me2 and H3K9me2, was significantly lower around NPCs. In contrast, the presence of marks of active chromatin such as H3K4me2 was only decreased very slightly around the NPCs or not at all (H3K9Ac). Interestingly, the histone demethylases LSD1 (also known as KDM1A) and KDM2A were enriched within the NPCs, suggesting that there was a chromatin-modifying mechanism at the NPCs. Inhibition of transcription resulted in a larger drop in the distribution of H1, H3K9me2 and H3K23me2, which implies that transcription has a role in the organization of heterochromatin at the NP.
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