Tropoelastin production and tropoelastin messenger RNA activity. Relationship to copper and elastin cross-linking in chick aorta
- 1 July 1986
- journal article
- research article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 237 (1) , 17-23
- https://doi.org/10.1042/bj2370017
Abstract
The elastin content of the chick thoracic aorta increases 2-3-fold during the first 3 weeks post-hatching. The deposition of elastin requires the covalent cross-linking of tropoelastin by means of lysine-derived cross-links. This process is sensitive to dietary copper intake, since copper serves as cofactor for lysyl oxidase, the enzyme that catalyses the oxidative deamination of the lysine residues involved in cross-link formation. Disruption of cross-linking alters tissue concentrations of both elastin and tropoelastin and results in a net decrease in aortic elastin content. Autoregulation of tropoelastin synthesis by changes in the pool sizes of elastin or tropoelastin has been suggested as a possible mechanisn for the diminished aortic elastin content. Consequently, dietary copper deficiency was induced to study the effect of impaired elastin cross-link formation on tropoelastin synthesis. Elastin in aortae from copper-deficient chicks was only two-thirds to one-half the amount measured in copper-supplemented chicks, whereas copper-deficient concentrations of tropoelastin in aorta were at least 5-fold higher than normal. In spite of these changes, however, increased amounts of tropoelastin, copper deficiency and decreased amounts of elastin did not influence the amounts of functional elastin mRNA in aorta. Likewise, the production of tropoelastin in aorta explants was the same whether the explants were taken from copper-sufficient or -deficient birds. The lower accumulation of elastin in aorta from copper-deficient chicks appeared to be due to extracellular proteolysis, rather than to a decrease in the rate of synthesis. Electrophoresis of aorta extracts, followed by immunological detection of tropoelastin-derived products, indicated degradation products in aortae from copper-deficient birds. In extracts of aortae from copper-sufficient chicks, tropoelastin was not degraded and appeared to be incorporated into elastin without further proteolytic processing.This publication has 35 references indexed in Scilit:
- Induction of increased collagen and elastin biosynthesis in copper-deficient pig aorta.Arteriosclerosis: An Official Journal of the American Heart Association, Inc., 1986
- Measurement of the absolute synthesis of soluble and insoluble elastin by chick aortic tissueCanadian Journal of Biochemistry and Cell Biology, 1983
- Kinetics of the Incorporation of Tropoelastin into Elastic Fibers in Embryonic Chick AortadConnective Tissue Research, 1982
- Modulation of tropoelastin production and elastin messenger ribonucleic acid activity in developing sheep lungBiochemistry, 1981
- Differential expression of aortic and lung elastin genes during chick embryogenesisDevelopmental Biology, 1981
- Elastin synthesis by ligamentum nuchae fibroblasts: effects of culture conditions and extracellular matrix on elastin production.The Journal of cell biology, 1981
- Elastin Structure, Biosynthesis, and Relation to Disease StatesNew England Journal of Medicine, 1981
- Isolation of biologically active ribonucleic acid from sources enriched in ribonucleaseBiochemistry, 1979
- Inhibition of procollagen cell-free synthesis by amino-terminal extension peptidesBiochemistry, 1979
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970