Reversibility of Nuclear and 3D Genomic Changes in Non-Cancerous Fibroblasts After Constricted Migration

Metastatic cancer cells and healthy fibroblasts must traverse constrictive spaces to reach secondary sites. After passing through multiple constrictions, cancer cells often experience stable changes to their nucleus morphology, 3D genome structure, and migratory phenotype. Here, we investigate whether fibroblasts (BJ-5ta), which are non-cancerous and have an inherent ability to migrate to fulfill roles in wound repair, likewise experience nuclear and 3D genomic changes with constricted migration. We find that BJ-5ta cells only slightly increase their migratory capacity after sequential constricted migrations but do experience nuclear deformations and 3D genome alterations at the compartment level after constricted migration. Transient compartment shifts spatially rearranged genes associated with preparation for and response to migration. Unlike the stable changes associated with long term phenotype changes in cancer cells, however, the nucleus deformations recovered back to unmigrated levels following proliferation and cell movement. Some compartment changes persist and might influence responses to future stimuli, but most 3D genome changes revert to the unmigrated state after cell proliferation. Our study shows that non-cancerous migratory cells are not necessarily less susceptible to nucleus and 3D genome alterations caused by constricted migration, but do recover from such alterations more readily than cancer cells.

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Journal
Molecular Biology of the Cell
Published
2026-09-09
DOI
https://doi.org/10.1091/mbc.e26-01-0053
Primary Topic
Cancer Cells and Metastasis
Type
article
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article

Reversibility of Nuclear and 3D Genomic Changes in Non-Cancerous Fibroblasts After Constricted Migration

Christopher Playter, Rachel Patton McCord, Samuel John Benson, Amit S. Joshi et al.
Molecular Biology of the Cell
Cancer Cells and Metastasis
article

Reversibility of Nuclear and 3D Genomic Changes in Non-Cancerous Fibroblasts After Constricted Migration

Christopher Playter, Rachel Patton McCord, Samuel John Benson, Amit S. Joshi, Preston Young, Timothy B Simmons, Kathryn Perry, Amanda Swets, Renata Dos Reis Marques
article en

Abstract

Metastatic cancer cells and healthy fibroblasts must traverse constrictive spaces to reach secondary sites. After passing through multiple constrictions, cancer cells often experience stable changes to their nucleus morphology, 3D genome structure, and migratory phenotype. Here, we investigate whether fibroblasts (BJ-5ta), which are non-cancerous and have an inherent ability to migrate to fulfill roles in wound repair, likewise experience nuclear and 3D genomic changes with constricted migration. We find that BJ-5ta cells only slightly increase their migratory capacity after sequential constricted migrations but do experience nuclear deformations and 3D genome alterations at the compartment level after constricted migration. Transient compartment shifts spatially rearranged genes associated with preparation for and response to migration. Unlike the stable changes associated with long term phenotype changes in cancer cells, however, the nucleus deformations recovered back to unmigrated levels following proliferation and cell movement. Some compartment changes persist and might influence responses to future stimuli, but most 3D genome changes revert to the unmigrated state after cell proliferation. Our study shows that non-cancerous migratory cells are not necessarily less susceptible to nucleus and 3D genome alterations caused by constricted migration, but do recover from such alterations more readily than cancer cells.

Molecular Biology of the Cell
University of Tennessee at Knoxville (US)
Reduced inequalities
Openalex Percentile: Top 13%
Cancer Cells and Metastasis
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Reversibility of Nuclear and 3D Genomic Changes in Non-Cancerous Fibroblasts After Constricted Migration — Christopher Playter, Rachel Patton McCord, et al. · Molecular Biology of the Cell (2026) | TGRS Research Map | TGRS