Centrosome amplification promotes cell invasion via cell–cell contact disruption and Rap-1 activation

Author:

Prakash Anu1ORCID,Paunikar Shishir1ORCID,Webber Mark1,McDermott Emma2,Vellanki Sri H.3,Thompson Kerry2ORCID,Dockery Peter2,Jahns Hanne4ORCID,Brown James A. L.56,Hopkins Ann M.3ORCID,Bourke Emer1ORCID

Affiliation:

1. Lambe Institute for Translational Research, Discipline of Pathology, Centre for Chromosome Biology, University of Galway 1 , Galway H91 V4AY, Ireland

2. Centre for Microscopy and Imaging, Discipline of Anatomy, School of Medicine, University of Galway 2 , Galway H91 W5P7, Ireland

3. Beaumont Hospital, Royal College of Surgeons in Ireland 6 Department of Surgery , , Dublin D09 DK19, Ireland

4. School of Veterinary Medicine, University College Dublin 3 Pathobiology Section , , Dublin, Ireland

5. University of Limerick 4 Department of Biological Sciences , , Limerick V94T9PX, Ireland

6. Limerick Digital Cancer Research Centre (LDCRC) and Health Research Institute, University of Limerick 5 , Limerick V94T9PX, Ireland

Abstract

ABSTRACT Centrosome amplification (CA) is a prominent feature of human cancers linked to tumorigenesis in vivo. Here, we report mechanistic contributions of CA induction alone to tumour architecture and extracellular matrix (ECM) remodelling. CA induction in non-tumorigenic breast cells MCF10A causes cell migration and invasion, with underlying disruption of epithelial cell–cell junction integrity and dysregulation of expression and subcellular localisation of cell junction proteins. CA also elevates expression of integrin β-3, its binding partner fibronectin-1 and matrix metalloproteinase enzymes, promoting cell–ECM attachment, ECM degradation, and a migratory and invasive cell phenotype. Using a chicken embryo xenograft model for in vivo validation, we show that CA-induced (+CA) MCF10A cells invade into the chick mesodermal layer, with inflammatory cell infiltration and marked focal reactions between chorioallantoic membrane and cell graft. We also demonstrate a key role of small GTPase Rap-1 signalling through inhibition using GGTI-298, which blocked various CA-induced effects. These insights reveal that in normal cells, CA induction alone (without additional oncogenic alterations) is sufficient to confer early pro-tumorigenic changes within days, acting through Rap-1-dependent signalling to alter cell–cell contacts and ECM disruption.

Funder

Science Foundation Ireland

University of Galway

Publisher

The Company of Biologists

Subject

Cell Biology

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1. First person – Anu Prakash;Journal of Cell Science;2023-11-01

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