Literature DB >> 15292402

Trichostatin A-induced histone acetylation causes decondensation of interphase chromatin.

Katalin Fejes Tóth1, Tobias A Knoch, Malte Wachsmuth, Monika Frank-Stöhr, Michael Stöhr, Christian P Bacher, Gabriele Müller, Karsten Rippe.   

Abstract

The effect of trichostatin A (TSA)-induced histone acetylation on the interphase chromatin structure was visualized in vivo with a HeLa cell line stably expressing histone H2A, which was fused to enhanced yellow fluorescent protein. The globally increased histone acetylation caused a reversible decondensation of dense chromatin regions and led to a more homogeneous distribution. These structural changes were quantified by image correlation spectroscopy and by spatially resolved scaling analysis. The image analysis revealed that a chromatin reorganization on a length scale from 200 nm to >1 microm was induced consistent with the opening of condensed chromatin domains containing several Mb of DNA. The observed conformation changes could be assigned to the folding of chromatin during G1 phase by characterizing the effect of TSA on cell cycle progression and developing a protocol that allowed the identification of G1 phase cells on microscope coverslips. An analysis by flow cytometry showed that the addition of TSA led to a significant arrest of cells in S phase and induced apoptosis. The concentration dependence of both processes was studied.

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Year:  2004        PMID: 15292402     DOI: 10.1242/jcs.01293

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  85 in total

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Review 3.  Organization of interphase chromatin.

Authors:  Rachel A Horowitz-Scherer; Christopher L Woodcock
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6.  Dynamics of telomeres and promyelocytic leukemia nuclear bodies in a telomerase-negative human cell line.

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7.  Probing the dynamic organization of transcription compartments and gene loci within the nucleus of living cells.

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Review 8.  Histone modifications and nuclear architecture: a review.

Authors:  Eva Bártová; Jana Krejcí; Andrea Harnicarová; Gabriela Galiová; Stanislav Kozubek
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9.  Nuclear Mechanics within Intact Cells Is Regulated by Cytoskeletal Network and Internal Nanostructures.

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10.  Nuclear body movement is determined by chromatin accessibility and dynamics.

Authors:  Sabine M Görisch; Malte Wachsmuth; Carina Ittrich; Christian P Bacher; Karsten Rippe; Peter Lichter
Journal:  Proc Natl Acad Sci U S A       Date:  2004-08-26       Impact factor: 11.205

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