Inhibition of PDIs Downregulates Core LINC Complex Proteins, Promoting the Invasiveness of MDA-MB-231 Breast Cancer Cells in Confined Spaces In Vitro

Author:

Young Natalie1,Gui Zizhao1ORCID,Mustafa Suleiman2ORCID,Papa Kleopatra1,Jessop Emily1,Ruddell Elizabeth1,Bevington Laura1,Quinlan Roy A.1ORCID,Benham Adam M.1ORCID,Goldberg Martin W.1ORCID,Obara Boguslaw2,Karakesisoglou Iakowos1

Affiliation:

1. Department of Biosciences, Durham University, Durham DH1 3LE, UK

2. School of Computing, Newcastle University, Newcastle upon Tyne NE4 5TG, UK

Abstract

Eukaryotic cells tether the nucleoskeleton to the cytoskeleton via a conserved molecular bridge, called the LINC complex. The core of the LINC complex comprises SUN-domain and KASH-domain proteins that directly associate within the nuclear envelope lumen. Intra- and inter-chain disulphide bonds, along with KASH-domain protein interactions, both contribute to the tertiary and quaternary structure of vertebrate SUN-domain proteins. The significance of these bonds and the role of PDIs (protein disulphide isomerases) in LINC complex biology remains unclear. Reducing and non-reducing SDS-PAGE analyses revealed a prevalence of SUN2 homodimers in non-tumorigenic breast epithelia MCF10A cells, but not in the invasive triple-negative breast cancer MDA-MB-231 cell line. Furthermore, super-resolution microscopy revealed SUN2 staining alterations in MCF10A, but not in MDA-MB-231 nuclei, upon reducing agent exposure. While PDIA1 levels were similar in both cell lines, pharmacological inhibition of PDI activity in MDA-MB-231 cells led to SUN-domain protein down-regulation, as well as Nesprin-2 displacement from the nucleus. This inhibition also caused changes in perinuclear cytoskeletal architecture and lamin downregulation, and increased the invasiveness of PDI-inhibited MDA-MB-231 cells in space-restrictive in vitro environments, compared to untreated cells. These results emphasise the key roles of PDIs in regulating LINC complex biology, cellular architecture, biomechanics, and invasion.

Funder

Rosetrees Trust, Medical Research Council (MRC) Impact Acceleration Account (IAA), and the JGW Patterson Foundation – The Phillip Robson Cancer Studentship

Publisher

MDPI AG

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