Topological organization of multichromosomal regions by the long intergenic noncoding RNA Firre

E Hacisuleyman, LA Goff, C Trapnell… - Nature structural & …, 2014 - nature.com
E Hacisuleyman, LA Goff, C Trapnell, A Williams, J Henao-Mejia, L Sun, P McClanahan…
Nature structural & molecular biology, 2014nature.com
RNA, including long noncoding RNA (lncRNA), is known to be an abundant and important
structural component of the nuclear matrix. However, the molecular identities, functional
roles and localization dynamics of lncRNAs that influence nuclear architecture remain poorly
understood. Here, we describe one lncRNA, Firre, that interacts with the nuclear-matrix
factor hnRNPU through a 156-bp repeating sequence and localizes across an~ 5-Mb
domain on the X chromosome. We further observed Firre localization across five distinct …
Abstract
RNA, including long noncoding RNA (lncRNA), is known to be an abundant and important structural component of the nuclear matrix. However, the molecular identities, functional roles and localization dynamics of lncRNAs that influence nuclear architecture remain poorly understood. Here, we describe one lncRNA, Firre, that interacts with the nuclear-matrix factor hnRNPU through a 156-bp repeating sequence and localizes across an ~5-Mb domain on the X chromosome. We further observed Firre localization across five distinct trans-chromosomal loci, which reside in spatial proximity to the Firre genomic locus on the X chromosome. Both genetic deletion of the Firre locus and knockdown of hnRNPU resulted in loss of colocalization of these trans-chromosomal interacting loci. Thus, our data suggest a model in which lncRNAs such as Firre can interface with and modulate nuclear architecture across chromosomes.
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