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Genome-wide maps of nuclear lamina interactions in single human cells.

Jop Kind ,
Ludo Pagie ,
Sandra S de Vries ,
Leila Nahidiazar ,
Siddharth S Dey ,
Magda Bienko ,
Ye Zhan ,
Bryan Lajoie ,
Carolyn A de Graaf ,
Mario Amendola ,
Geoffrey Fudenberg ,
Maxim Imakaev ,
Leonid A Mirny ,
Kees Jalink ,
Job Dekker ,
Alexander van Oudenaarden ,
Bas van Steensel

Abstract

Mammalian interphase chromosomes interact with the nuclear lamina (NL) through hundreds of large lamina-associated domains (LADs). We report a method to map NL contacts genome-wide in single human cells. Analysis of nearly 400 maps reveals a core architecture consisting of gene-poor LADs that contact the NL with high cell-to-cell consistency, interspersed by LADs with more variable NL interactions. The variable contacts tend to be cell-type specific and are more sensitive to changes in genome ploidy than the consistent contacts. Single-cell maps indicate that NL contacts involve multivalent interactions over hundreds of kilobases. Moreover, we observe extensive intra-chromosomal coordination of NL contacts, even over tens of megabases. Such coordinated loci exhibit preferential interactions as detected by Hi-C. Finally, the consistency of NL contacts is inversely linked to gene activity in single cells and correlates positively with the heterochromatic histone modification H3K9me3. These results highlight fundamental principles of single-cell chromatin organization. VIDEO ABSTRACT.

More about this publication

Cell

Volume 163
Issue nr. 1
Pages 134-47
Publication date 24-09-2015

Full text links

Publisher website (DOI) 10.1016/j.cell.2015.08.040
Europe PubMed Central 26365489
Pubmed 26365489

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