Normal Skeletal Development of Mice Lacking Matrilin 1: Redundant Function of Matrilins in Cartilage?

Author:

Aszódi Attila1,Bateman John F.1,Hirsch Emilio2,Baranyi Mária3,Hunziker Ernst B.4,Hauser Nik5,Bösze Zsuzsa3,Fässler Reinhard1

Affiliation:

1. Department of Experimental Pathology, Lund University, 221 85 Lund, Sweden 1 ;

2. Department of Genetics, Biology and Biochemistry, University of Torino, 10126 Torino, Italy 2 ;

3. Agricultural Biotechnology Center, 2100 Gödöllö, Hungary 3 ; and

4. M.E. Müller Institute for Biomechanics, University of Bern, 3010 Bern, 4 and

5. Department of Rheumatology, University Hospital Zürich, 8091 Zürich, 5 Switzerland

Abstract

ABSTRACT Matrilin 1, or cartilage matrix protein, is a member of a novel family of extracellular matrix proteins. To date, four members of the family have been identified, but their biological role is unknown. Matrilin 1 and matrilin 3 are expressed in cartilage, while matrilin 2 and matrilin 4 are present in many tissues. Here we describe the generation and analysis of mice carrying a null mutation in the Crtm gene encoding matrilin 1. Anatomical and histological studies demonstrated normal development of homozygous mutant mice. Northern blot and biochemical analyses show no compensatory up-regulation of matrilin 2 or 3 in the cartilage of knockout mice. Although matrilin 1 interacts with the collagen II and aggrecan networks of cartilage, suggesting that it may play a role in cartilage tissue organization, studies of collagen extractability indicated that collagen fibril maturation and covalent cross-linking were unaffected by the absence of matrilin 1. Ultrastructural analysis did not reveal any abnormalities of matrix organization. These data suggest that matrilin 1 is not critically required for cartilage structure and function and that matrilin 1 and matrilin 3 may have functionally redundant roles.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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