Person: Olsen, Bjorn
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Publication The Human α1(XV) Collagen Contains a Large Aminoterminal Non-Triple Helical Domain With a Tandem Repeat Structure
(The American Society for Biochemistry and Molecular Biology, Inc., 1994) Olsen, Bjorn; Muragaki, Yasuteru; Abe, Nobuhiro; Ninomiya, Yoshifumi; Ooshima, AkiraWe have cloned and characterized cDNAs encoding the alpha 1 chain of type XV collagen from a human placenta library. Using primer extension cloning we extended the cDNAs to the 5' end of the mRNA and determined the complete deduced primary structure of the human alpha 1(XV) chain. The polypeptide chain contains nine triple helical domains separated by eight non-triple helical regions and flanked by large amino-terminal (555 amino acid residues) and carboxyl-terminal (256 amino acid residues) non-triple helical domains. Comparison of amino acid sequences of the human alpha 1(XV) chain with those of mouse alpha 1(XVIII) collagen showed remarkable similarity within both amino- and carboxyl-terminal non-triple helical domains. Within the carboxyl third of the amino-terminal domain a tandem repeat structure is found with an about 45-amino acid residue sequence repeated four times. This amino acid sequence has a strikingly high similarity to rat cartilage proteoglycan core protein. Northern blot analysis of human embryonic RNA revealed that alpha 1(XV) mRNA is expressed predominantly in internal organs such as the adrenal gland, kidney, and pancreas.
Publication Differential Localization of mRNAs of Collagen Types I and II in Chick Fibroblasts, Chondrocytes, and Corneal Cells by In Situ Hybridization Using cDNA Probes
(Rockefeller University Press, 1986-06-01) Hayashi, Masando; Ninomiya, Yoshifumi; Parsons, Janey; Hayashi, Kimiko; Olsen, Bjorn; Trelstad, RobertWe have employed a highly specific in situ hybridization protocol that allows differential detection of mRNAs of collagen types I and II in paraffin sections from chick embryo tissues. All probes were cDNA restriction fragments encoding portions of the C-propeptide region of the pro alpha-chain, and some of the fragments also encoded the 3'- untranslated region of mRNAs of either type I or type II collagen. Smears of tendon fibroblasts and those of sternal chondrocytes from 17- d-old chick embryos as well as paraffin sections of 10-d-old whole embryos and of the cornea of 6.5-d-old embryos were hybridized with 3H- labeled probes for either type I or type II collagen mRNA. Autoradiographs revealed that the labeling was prominent in tendon fibroblasts with the type I collagen probe and in sternal chondrocytes with the type II collagen probe; that in the cartilage of sclera and limbs from 10-d-old embryos, the type I probe showed strong labeling of fibroblast sheets surrounding the cartilage and of a few chondrocytes in the cartilage, whereas the type II probe labeled chondrocytes intensely and only a few fibroblasts; and that in the cornea of 6.5-d- old embryos, the type I probe labeled the epithelial cells and fibroblasts in the stroma heavily, and the endothelial cells slightly, whereas the type II probe labeled almost exclusively the epithelial cells except for a slight labeling in the endothelial cells. These data indicate that embryonic tissues express these two collagen genes separately and/or simultaneously and offer new approaches to the study of the cellular regulation of extracellular matrix components.
Publication Synthesis and characterization of cDNA encoding a cartilage-specific short collagen.
(Proceedings of the National Academy of Sciences, 1984-05-01) Ninomiya, Yoshifumi; Olsen, BjornHyaline cartilage contains a unique set of collagenous proteins. Type II collagen is the most abundant, constituting about 85% of the total cartilage collagen. In addition, several minor collagenous components have been described. To study the structure and developmental regulation of chondrocyte-specific collagens, we have constructed a cDNA library from embryonic chicken sternal cartilage mRNA. We report here on the isolation and characterization of a 3200 base-pair-long cDNA that codes for a collagenous polypeptide of unusual structure in that the total length of the molecule is only about half of pro alpha 1(II) collagen chains. The mRNA for this polypeptide is considerably smaller than mRNA encoding the pro alpha chains of interstitial collagens. In addition, the peptide encoded by the cDNA appears to contain at least three domains with triple-helical potential separated by short, noncollagenous peptides. Between the three collagenous domains are several cysteinyl residues.
Publication The Structure of Type IX Collagen
(Oxford University Press (OUP), 1985-01-01) Olsen, Bjorn; van der Rest, Michel; Mayne, Richard; Ninomiya, Yoshifumi; Seidah, Nabil; Chretien, Michel