Dermal collagen fibrils are hybrids of type I and type III collagen molecules.
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Summary
It has been suggested that dermal collagen fibrils with 67-nm periodicity consist of hybrids of type I and type III collagens, but conclusive evidence for this form of hybridization is lacking.
- Type
- article
- Published
- 1990-10-01
- Cited by
- 150
- References
- 19
- OpenAlex
- https://openalex.org/W2009319722
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:30402238
Keywords
Fibrillogenesis, Fibril, Collagen, type I, alpha 1, Type I collagen, Chemistry
References
- Collagen structure: evidence for a helical organization of the collagen fibril.
- Human skin collagen. Presence of type I and type III at all levels of the dermis.
- Are Collagen Fibrils in the Developing Avian Cornea Composed of Two Different Collagen Types?
- Immunoidentification of type XII collagen in embryonic tissues [published erratum appears in J Cell Biol 1989 Nov;109(5):following 2254]
- Covalent crosslinking between molecules of type I and type III collagen. The involvement of the N-terminal, nonhelical regions of the alpha 1 (I) and alpha 1 (III) chains in the formation of intermolecular crosslinks.
- Molecular Pattern in Native Collagen
- D-periodic distribution of collagen type IX along cartilage fibrils
- Synthesis of types I and III procollagen and collagen by monkey aortic smooth muscle cells in vitro.
- In vitro formation of hybrid fibrils of type V collagen and type I collagen. Limited growth of type I collagen into thick fibrils by type V collagen.
- Direct visualization of IgM antibodies bound to tissue antigens using a monoclonal anti-type III collagen IgM as a model system.
- Type I and Type III Collagen Interactions during Fibrillogenesis a
- Quasi-hexagonal molecular packing in collagen fibrils
- Type III collagen can be present on banded collagen fibrils regardless of fibril diameter
- Nucleotide sequences of complementary deoxyribonucleic acids for the pro alpha 1 chain of human type I procollagen. Statistical evaluation of structures that are conserved during evolution.
- Collagen type I and type V are present in the same fibril in the avian corneal stroma
- Specific inhibition of type I and type II collagen fibrillogenesis by the small proteoglycan of tendon.
- Ultrastructural localization of fibronectin to different anatomic structures of human skin.
- Identification of the sites in collagen alpha-chains that bind serum anti-gelatin factor (cold-insoluble globulin).
Cited by
- Collagen fibril size and crimp morphology in ruptured and intact Achilles tendons.
- Collagen fibrils of an invertebrate (Sepia officinalis) are heterotypic: immunocytochemical demonstration.
- Effect of UV irradiation on stabilized collagen: role of chromium(III).
- Immunochemical analysis of human kidney reticulin.
- Development of a novel co-culture based in vitro model system to study the wound healing process
- Developmental plasticity of human foetal femur-derived cells in pellet culture: self assembly of an osteoid shell around a cartilaginous core.
- Different role of macrophages and vascular smooth muscle cells in atherosclerotic lesions of Watanabe heritable hyperlipidemic (WHHL) rabbit between aorta and coronary artery.
- Laminin-1 mediates epigenetic control of the epithelial cadherin for breast cancer cells in three-dimensional culture
- Detection of COL III in parchment by amino acid analysis
- Osteogenic differentiation of hypertrophic chondrocytes involves asymmetric cell divisions and apoptosis
- COLLAGEN ALTERATIONS IN CHRONICALLY SUN‐DAMAGED HUMAN SKIN
- Expression of collagens and decorin during aortic arch artery development: implications for matrix pattern formation.
- Structural analysis of the extension peptides on matrix forms of type V collagen in fetal calf bone and skin.
- Expression of type I and type V collagen mRNAs in the elasmoid scales of a teleost fish as revealed by in situ hybridization.
- Functional Linkage between the Endoplasmic Reticulum Protein Hsp47 and Procollagen Expression in Human Vascular Smooth Muscle Cells*
- Developmental changes in skin collagen biosynthesis pathway in posthatch male and female chickens.
- Functional changes in bladder tissue from type III collagen-deficient mice
- Immunodissection of the connective tissue matrix in human skin
- Collagen fibril formation in a wound healing model.
- Vascular Ehlers-Danlos Syndrome Mutations in Type III Collagen Differently Stall the Triple Helical Folding*
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- Expression of type XIV collagen in developing chicken tendons: Association with assembly and growth of collagen fibrils
- Type IX collagen: A possible function in articular cartilage
- Type III Collagen is a Key Regulator of the Collagen Fibrillar Structure and Biomechanics of Articular Cartilage and Meniscus
- Immunoelectron microscopical evidence that type V collagen is a fibrillar collagen: importance for an aggregating capability of the preparation for reconstituting banding fibrils.