Taylor & Francis Group
Browse
kncl_a_1570810_sm9683.pdf (680.91 kB)

Interplay of lamin A and lamin B LADs on the radial positioning of chromatin

Download (680.91 kB)
journal contribution
posted on 2019-02-01, 14:09 authored by Frida Forsberg, Annaël Brunet, Tharvesh M. Liyakat Ali, Philippe Collas

Immunosuppressive drugs such as cyclosporin A (CsA) can elicit hepatotoxicity by affecting gene expression. Here, we address the link between CsA and large-scale chromatin organization in HepG2 hepatocarcinoma cells. We show the existence of lamina-associated domains (LADs) interacting with lamin A, lamin B, or both. These ‘A-B’, ‘A-only’ and ‘B-only’ LADs display distinct fates after CsA treatment: A-B LADs remain constitutive or lose A, A-only LADs mainly lose A or switch to B, and B-only LADs remain B-only or acquire A. LAD rearrangement is overall uncoupled from changes in gene expression. Three-dimensional (3D) genome modeling predicts changes in radial positioning of LADs as LADs switch identities, which are corroborated by fluorescence in situ hybridization. Our results reveal interplay between A- and B-type lamins on radial locus positioning, suggesting complementary contributions to large-scale genome architecture. The data also unveil a hitherto unsuspected impact of cytotoxic drugs on genome conformation.Abbreviations: ChIP-seq: chromatin immunoprecipitation sequencing; CsA: cyclosporin A; FISH; fluorescence in situ hybridization; ICMT: isoprenylcysteine methyltransferase; LAD: lamina-associated domain; TAD: topologically-associated domain

Funding

This work is funded by the Research Council of Norway, South East Health Norway, and EU Scientia Fellowship FP7-PEOPLE-2013-COFUND No. 609020 (A.B.).

History