ColVa1 and ColXIa1 are required for myocardial morphogenesis and heart valve development
Open Access
- 6 October 2006
- journal article
- research article
- Published by Wiley in Developmental Dynamics
- Vol. 235 (12) , 3295-3305
- https://doi.org/10.1002/dvdy.20980
Abstract
Genetic mutations in minor fibrillar collagen types Va1 (ColVa1) and XIa1 (ColXI) have been identified in connective tissue disorders including Ehlers–Danlos syndrome and chondrodysplasias. ColVa1+/− and ColXIa1−/− mutant mice recapitulate these human disorders and show aberrations in collagen fiber organization in connective tissue of the skin, cornea, cartilage, and tendon. In the heart, fibrous networks of collagen fibers form throughout the ventricular myocardium and heart valves, and alterations in collagen fiber homeostasis are apparent in many forms of cardiac disease associated with myocardial dysfunction and valvular insufficiency. There is increasing evidence for cardiac dysfunction in connective tissue disorders, but the mechanisms have not been addressed. ColVa1+/− and ColXIa1−/− mutant mice were used to identify roles for ColVa1 and ColXIa1 in ventricular myocardial morphogenesis and heart valve development. These affected cardiac structures show a compensatory increase in type I collagen deposition, similar to that previously described in valvular and cardiomyopathic disease. Morphological cardiac defects associated with changes in collagen fiber homeostasis identified in ColVa1+/− and ColXIa1−/− mice provide an insight into previously unappreciated forms of cardiac dysfunction associated with connective tissue disorders. Developmental Dynamics 235:3295–3305, 2006.Keywords
This publication has 49 references indexed in Scilit:
- Hearts and bones: Shared regulatory mechanisms in heart valve, cartilage, tendon, and bone developmentDevelopmental Biology, 2006
- Structural Abnormalities of the Cornea and Lid Resulting from Collagen V MutationsInvestigative Opthalmology & Visual Science, 2006
- A Look Between the Cardiomyocytes: The Extracellular Matrix in Heart FailureMayo Clinic Proceedings, 2006
- Progress in the understanding of connective tissue disordersAmerican Journal Of Medical Genetics Part C-Seminars In Medical Genetics, 2005
- COL5A1 Haploinsufficiency Is a Common Molecular Mechanism Underlying the Classical Form of EDSAmerican Journal of Human Genetics, 2000
- Stickler Syndrome Type 2 and Linkage to the COL11A1 GeneaAnnals of the New York Academy of Sciences, 1996
- Atrioventricular valves of the mouse: III. Collagenous skeleton and myotendinous junctionThe Anatomical Record, 1995
- Developmental pattern of expression of the mouse α1(XI) collagen gene (Col11a1)Developmental Dynamics, 1995
- Targeted mutation in the col5a2 gene reveals a regulatory role for type V collagen during matrix assemblyNature Genetics, 1995
- Collagen heterogeneity in human cartilage: Identification of several new collagen chainsBiochemical and Biophysical Research Communications, 1979