The invariant chain CD74 protein is a cell surface binding partner of TIMP‐1 in breast cancer cells

Author:

Høeberg Mikkel123,Noer Julie Boertmann1,Vistesen Mette Vixø1,Bartels Annette1,Bech Esben Matzen2,Nygård Sune Boris1,Lademann Ulrik1,Stenvang Jan1,Liu Siqi4,Fuglsang Anja Thoe2,Brünner Nils1,Moreira José Manuel Afonso1ORCID

Affiliation:

1. Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences University of Copenhagen Denmark

2. Transport Biology section, Department of Plant and Environmental Sciences University of Copenhagen Denmark

3. Sino‐Danish Center for Education and Research (SDC) Aarhus University Denmark

4. Beijing Institute of Genomics Chinese Academy of Sciences Beijing China

Abstract

Tissue inhibitor of metalloproteinases‐1 (TIMP‐1) regulates the proteolytic activity of matrix metalloproteinases (MMPs), playing an important role in the homeostasis of the extracellular matrix. Beyond its well‐known role in tissue maintenance, TIMP‐1 has been associated with multiple MMP‐independent cytokine‐like functions. The protein structure of TIMP‐1, with two distinct domains, one interacting with MMPs and another able to bind multiple partners, provides a rationale for this multifunctionality. The identification of CD63 as a cell surface receptor for TIMP‐1, able to mediate intracellular signaling through the Erk/MAPK axis, provided a molecular basis for the role of TIMP‐1 in cellular signaling. However, several lines of evidence suggest that TIMP‐1 may be able to associate with many interaction partners, thus attaining multiple functions. To enable the identification of previously unknown interaction partners that may underpin the core cellular functions of TIMP‐1, known as well as unknown, we performed a yeast two‐hybrid screening using a mammary gland complementary DNA (cDNA) library. We report here the identification of multiple interactors, including MHC class II‐associated invariant chain γ (CD74). We verified that CD74 interacts with TIMP‐1 in breast cancer cells and that this interaction contributes to cellular internalization of TIMP‐1 and mediates intracellular signaling through the Akt signaling axis in breast cancer cells. These data provide new insights into the complex nature of the functions of TIMP‐1 and their potential mechanistic basis.

Funder

Danmarks Grundforskningsfond

Savvaerksejer Jeppe Juhl og Hustru Ovita Juhls Mindelegat

Publisher

Wiley

Subject

Cancer Research,Genetics,Molecular Medicine,General Medicine,Oncology

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