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Glycobiology and Extracellular Matrices
2 Results
- Glycobiology and Extracellular MatricesOpen Access
Extracellular Regulation of Bone Morphogenetic Protein Activity by the Microfibril Component Fibrillin-1
Journal of Biological ChemistryVol. 291Issue 24p12732–12746Published online: April 8, 2016- Alexander P. Wohl
- Helen Troilo
- Richard F. Collins
- Clair Baldock
- Gerhard Sengle
Cited in Scopus: 53Since the discovery of bone morphogenetic proteins (BMPs) as pluripotent cytokines extractable from bone matrix, it has been speculated how targeting of BMPs to the extracellular matrix (ECM) modulates their bioavailability. Understanding these processes is crucial for elucidating pathomechanisms of connective tissue disorders characterized by ECM deficiency and growth factor dysregulation. Here, we provide evidence for a new BMP targeting and sequestration mechanism that is controlled by the ECM molecule fibrillin-1. - Glycobiology and Extracellular MatricesOpen Access
Heterogeneity of Collagen VI Microfibrils: STRUCTURAL ANALYSIS OF NON-COLLAGENOUS REGIONS
Journal of Biological ChemistryVol. 291Issue 10p5247–5258Published online: January 7, 2016- Tobias Maaß
- Christopher P. Bayley
- Matthias Mörgelin
- Sandra Lettmann
- Paolo Bonaldo
- Mats Paulsson
- and others
Cited in Scopus: 20Collagen VI, a collagen with uncharacteristically large N- and C-terminal non-collagenous regions, forms a distinct microfibrillar network in most connective tissues. It was long considered to consist of three genetically distinct α chains (α1, α2, and α3). Intracellularly, heterotrimeric molecules associate to form dimers and tetramers, which are then secreted and assembled to microfibrils. The identification of three novel long collagen VI α chains, α4, α5, and α6, led to the question if and how these may substitute for the long α3 chain in collagen VI assembly.