Literature DB >> 35969179

Constricted migration is associated with stable 3D genome structure differences in cancer cells.

Rosela Golloshi1, Christopher Playter1, Trevor F Freeman1, Priyojit Das2, Thomas Isaac Raines1, Joshua H Garretson1, Delaney Thurston1, Rachel Patton McCord1.   

Abstract

To spread from a localized tumor, metastatic cancer cells must squeeze through constrictions that cause major nuclear deformations. Since chromosome structure affects nucleus stiffness, gene regulation, and DNA repair, here, we investigate the relationship between 3D genome structure and constricted migration in cancer cells. Using melanoma (A375) cells, we identify phenotypic differences in cells that have undergone multiple rounds of constricted migration. These cells display a stably higher migration efficiency, elongated morphology, and differences in the distribution of Lamin A/C and heterochromatin. Hi-C experiments reveal differences in chromosome spatial compartmentalization specific to cells that have passed through constrictions and related alterations in expression of genes associated with migration and metastasis. Certain features of the 3D genome structure changes, such as a loss of B compartment interaction strength, are consistently observed after constricted migration in clonal populations of A375 cells and in MDA-MB-231 breast cancer cells. Our observations suggest that consistent types of chromosome structure changes are induced or selected by passage through constrictions and that these may epigenetically encode stable differences in gene expression and cellular migration phenotype.
© 2022 The Authors.

Entities:  

Keywords:  Hi-C; chromosome spatial compartmentalization; constricted migration; nuclear lamina; nucleus deformation

Mesh:

Substances:

Year:  2022        PMID: 35969179      PMCID: PMC9535800          DOI: 10.15252/embr.202052149

Source DB:  PubMed          Journal:  EMBO Rep        ISSN: 1469-221X            Impact factor:   9.071


  81 in total

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  2 in total

1.  Constricted migration is associated with stable 3D genome structure differences in cancer cells.

Authors:  Rosela Golloshi; Christopher Playter; Trevor F Freeman; Priyojit Das; Thomas Isaac Raines; Joshua H Garretson; Delaney Thurston; Rachel Patton McCord
Journal:  EMBO Rep       Date:  2022-08-15       Impact factor: 9.071

2.  Confined migration induces heterochromatin formation and alters chromatin accessibility.

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  2 in total

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