Depletion of Collagen IX Alpha1 Impairs Myeloid Cell Function

Author:

Probst Kristina12,Stermann Jacek12,Bomhard Inga12,Etich Julia12,Pitzler Lena12,Niehoff Anja34,Bluhm Björn12,Xu Haifeng C.5,Lang Philipp A.5,Chmielewski Markus678,Abken Hinrich678,Blissenbach Birgit9,Machova Alzbeta9,Papadopoulou Nikoletta9,Brachvogel Bent12ORCID

Affiliation:

1. Department of Pediatrics and Adolescent Medicine, Experimental Neonatology, Medical Faculty, University of Cologne, Cologne, Germany

2. Center for Biochemistry, Medical Faculty, University of Cologne, Cologne, Germany

3. Institute of Biomechanics and Orthopaedics, German Sport University Cologne, Cologne, Germany

4. Cologne Center for Musculoskeletal Biomechanics (CCMB), University of Cologne, Cologne, Germany

5. Department of Molecular Medicine II, Medical Faculty, Heinrich Heine University, Düsseldorf, Germany

6. Center for Molecular Medicine Cologne (CMMC), University of Cologne, Cologne, Germany

7. Department I Internal Medicine, Medical Faculty, Cologne, Germany

8. RCI, Chair Gene-Immunotherapy, University Hospital Regensburg, Regensburg, Germany

9. Institute for Medical Microbiology, Immunology and Hygiene, Medical Faculty, University of Cologne, Cologne, Germany

Abstract

Abstract The trabecular extracellular matrix (ECM) forms a three-dimensional scaffold to stabilize the bone marrow, provide substrates for cell-matrix interactions and retain, present or release signals to modulate hematopoietic stem and progenitor cell development. However, the impact of trabecular ECM components on hematopoiesis has been poorly studied. Using collagen IX alpha1 - deficient (Col9a1(−/−)) mice, we revealed that a lack of collagen IX alpha1 results in a disorganized trabecular network enriched in fibronectin, and in a reduction in myeloid cells, which was accompanied by a decrease in colony-stimulating factor 1 receptor expression on monocytes from the bone marrow. In contrast, B-cell numbers in the bone marrow and T-cell numbers in the thymus remained unchanged. Alterations in the bone marrow microenvironment may not only reduce myeloid cell numbers, but also have long-term implications for myeloid cell function. Mice were infected with Listeria moncytogenes to analyze the function of myeloid cells. In this case, an inadequate macrophage-dependent clearance of bacterial infections was observed in Col9a1(−/−) mice in vivo. This was mainly caused by an impaired interferon-gamma/tumor necrosis factor-alpha-mediated activation of macrophages. The loss of collagen IX alpha1 therefore destabilizes the trabecular bone network, impairs myeloid cell differentiation, and affects the innate immune response against Listeria.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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