⭐ High Impact

Nuclear peripheral chromatin-lamin B1 interaction is required for global integrity of chromatin architecture and dynamics in human cells.

Chang Lei, Li Mengfan, Shao Shipeng, Li Chen, Ai Shanshan, Xue Boxin, Hou Yingping, Zhang Yiwen, Li Ruifeng, Fan Xiaoying, He Aibin, Li Cheng, Sun Yujie

📰 Protein & cell 📅 2022 📊 83 citations

Abstract

AbstractThe eukaryotic genome is folded into higher-order conformation accompanied with constrained dynamics for coordinated genome functions. However, the molecular machinery underlying these hierarchically organized three-dimensional (3D) chromatin architecture and dynamics remains poorly understood. Here by combining imaging and sequencing, we studied the role of lamin B1 in chromatin architecture and dynamics. We found that lamin B1 depletion leads to detachment of lamina-associated domains (LADs) from the nuclear periphery accompanied with global chromatin redistribution and decompaction. Consequently, the inter-chromosomal as well as inter-compartment interactions are increased, but the structure of topologically associating domains (TADs) is not affected. Using live-cell genomic loci tracking, we further proved that depletion of lamin B1 leads to increased chromatin dynamics, owing to chromatin decompaction and redistribution toward nucleoplasm. Taken together, our data suggest that lamin B1 and chromatin interactions at the nuclear periphery promote LAD maintenance, chromatin compaction, genomic compartmentalization into chromosome territories and A/B compartments and confine chromatin dynamics, supporting their crucial roles in chromatin higher-order structure and chromatin dynamics.

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📊 Figures

Figureu00a01

Lamin B1 regulates chromatin subnuclear localization and global compaction. (A) Immunostaining of H3K27me3. Red: H3K27me3. Green: lamin B1. Blue: DAPI staining. The 2D sections of nuclei are displayed...

Figureu00a02

Lamin B1 is required for the maintenance of LAD. (A) Genome tracks of chromosome 14 (20u2013107 Mb) display the log2 (ChIP/input) values of lamin A ChIP-seq data, LADs identified by EDD, A (orange, po...

Figureu00a03

Lamin B1 depletion reduces the insulation of chromosome territories and A/B compartments. (A) Normalized Hi-C trans-interaction matrices for the whole chromosomes in WT and lamin B1-KO samples. (B) Tr...

Figureu00a04

Lamin B1 depletion changes the location preferences of genomic loci. (A) Schematic representation of CRISPR-SunTag, a labeling and signal amplification system including dCas9 fused with 24 tandem repe...

Figureu00a05

Loss of chromatin-lamin B1 interaction increases chromatin mobility. (A) MSD curves of telomeres in WT ( n = 100) and lamin B1-KO ( n = 86) cells. MSD curves of 1Mb loci on chromosome 2 in WT ( n = 27...

Figureu00a06

Global decompaction of chromatin contributes to increased chromatin dynamics and intermingling of chromosome territories. (A) Representative 3D-projection chromosome painting images of chromosome 2 an...

Figureu00a07

Model of tug-of-war regulation of 3D chromatin structure by inner and peripheral nuclear matrix proteins. A model describing lamin B1 tethering chromatin to the nuclear periphery and acting tug-of-war...

Figure images are served from the NIH/NLM PubMed Central Open Access Subset or Europe PMC; copyright remains with the publishers and authors.

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