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Biomedical subjects

E Quentin-Hoffmann

Publications and source records attributed to E Quentin-Hoffmann.

4 recordsLinked to original sources

Deficient expression of decorin in infantile progeroid patients.

Fibroblasts from young patients exhibiting clinical features of progeroidal syndromes showed decreased biosynthesis of the small proteoglycan decorin. Cells in culture were metabolically labeled, and proteoglycans secreted into the medium were analyzed electrophoretically after immunoprecipitation with antibodies raised against decorin and biglycan. Fluorograms showed regularly a reduction to 15-30% of the normal amount of mature decorin and its core protein after chondroitin ABC lyase treatment. The size of the glycosaminoglycan chains was increased, but there was no obvious anomaly in the secretion kinetics of the mature proteoglycan. In addition, the patients' fibroblasts synthesized an increased amount of biglycan compared to control cells from healthy donors. Northern blot analysis clearly demonstrated a reduction by 85-94% in decorin mRNA, but biglycan mRNA was concomitantly increased, indicating that these alterations occur at the transcriptional level of protein expression. Transcription of decorin in fibroblasts from one of the patients was stimulated up to 3-fold by treatment with interleukin-1 beta. No response to interleukin-1 beta and transforming growth factor-beta was observed in the cells from another patient. In situ hybridization of cultured cells with an antisense decorin probe showed that decorin levels were reduced throughout the cell population. Surprisingly, subsequent examination of cells from one of the patients, now in mid-teenage, revealed a return to normal levels of decorin expression compared to age-matched controls. These studies suggest that, as in Marfan's syndrome where the primary defect concerns the fibrillin gene, reduced decorin expression contributes to the formation of an abnormal matrix and the pathogenesis of these disorders. They also indicate that this abnormality is likely to represent a secondary phenomenon which leads to a fault in the regulation of decorin gene transcription.

Base Sequence↗

Genetic defects in proteoglycan biosynthesis.

An overview on the structure of proteoglycans and on genetic defects in proteoglycan biosynthesis is given. Several patients with progeroid-like symptoms have been shown to have abnormalities in the biosynthesis of chondroitin/dermatan sulfate proteoglycans. A partial inactivity of galactosyltransferase I which catalyzes the second glycosyl transfer reaction in the assembly of glycosaminoglycan chains has been shown to represent the primary defect in one of the patients. A diminished concentration of a collagen-associated proteoglycan is considered to play a pathogenetic role in the development of loose skin.

Carbohydrate Sequence↗

Endocytosis of different members of the small chondroitin/dermatan sulfate proteoglycan family.

The family of small interstitial chondroitin/dermatan sulfate proteoglycans consists of at least three different molecular species: biglycan (proteoglycan I), decorin (proteoglycan II), and proteoglycan-100, which has a glycosylated core protein of about 100 kDa. The core protein of decorin has been shown to be responsible for receptor-mediated endocytosis of this proteoglycan species by a variety of mesenchymal cells. It is now demonstrated that skin fibroblasts and articular chondrocytes endocytose biglycan with an efficiency similar to that of decorin. Uptake of biglycan is also mediated by its core protein and can be inhibited by decorin in a partially competitive manner. In human fibroblasts, endosomal proteins of 51 and 26 kDa, which are known to bind decorin core protein, also interact with biglycan. This interaction can be inhibited by decorin. Bovine articular chondrocytes contained binding proteins of 48 and 25 kDa. Proteoglycan-100 can be distinguished from biglycan and decorin by its low clearance rate, which however, exceeds the rate of fluid phase endocytosis.

Blotting, Western↗

Colocalization of a large heterodimeric proteoglycan with basement membrane proteins in cultured cells.

A novel large heterodimeric dermatan sulfate proteoglycan with core proteins of 460 and 300 kDa, respectively, had been described as a secretory product of human fetal skin fibroblasts (Breuer et al., J. Biol. Chem. 266, 13224-13232 (1991)). Pulse-chase experiments showed a preferential association of the proteoglycan with the cell membrane. Immunogold labeling indicated its localization in fibrils on the cell surface as well as in fibrillar extensions from the cell body. Immunofluorescence studies yielded a fibrillar and punctate staining pattern which was also seen in cultured human and porcine endothelial cells. Dot-like structures were observed in transformed human keratinocytes. Various immunocytochemical double-labeling experiments indicated a remarkable colocalization of the proteoglycan with fibronectin, laminin, perlecan, and type IV collagen whereas only occasionally a colocalization with chondroitin-6-sulfate was found. No evidence for an enrichment of the proteoglycan in vinculin-containing structures was obtained. These results suggest that the proteoglycan is a widely distributed macromolecule which can associate with basement membrane components. Preliminary findings in rat cornea supported this conclusion.

Basement Membrane↗