DDR2 controls breast tumor stiffness and metastasis by regulating integrin mediated mechanotransduction in CAFs

Author:

Bayer Samantha VH123,Grither Whitney R134,Brenot Audrey13,Hwang Priscilla Y13,Barcus Craig E13,Ernst Melanie14ORCID,Pence Patrick1,Walter Christopher5,Pathak Amit5,Longmore Gregory D123ORCID

Affiliation:

1. ICCE Institute, Washington University, St Louis, United States

2. Department of Cell Biology and Physiology, Washington University, St Louis, United States

3. Department of Medicine, Washington University, St Louis, United States

4. Department of Biochemistry, Washington University, St Louis, United States

5. Department of Mechanical Engineering, Washington University, St Louis, United States

Abstract

Biomechanical changes in the tumor microenvironment influence tumor progression and metastases. Collagen content and fiber organization within the tumor stroma are major contributors to biomechanical changes (e., tumor stiffness) and correlated with tumor aggressiveness and outcome. What signals and in what cells control collagen organization within the tumors, and how, is not fully understood. We show in mouse breast tumors that the action of the collagen receptor DDR2 in CAFs controls tumor stiffness by reorganizing collagen fibers specifically at the tumor-stromal boundary. These changes were associated with lung metastases. The action of DDR2 in mouse and human CAFs, and tumors in vivo, was found to influence mechanotransduction by controlling full collagen-binding integrin activation via Rap1-mediated Talin1 and Kindlin2 recruitment. The action of DDR2 in tumor CAFs is thus critical for remodeling collagen fibers at the tumor-stromal boundary to generate a physically permissive tumor microenvironment for tumor cell invasion and metastases.

Funder

National Institute for Health Research

American Cancer Society

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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