Raman Microscopy and X-ray Diffraction, a Combined Study of Fibrillin-rich Microfibrillar Elasticity

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

  • J. Louise Haston
  • Engelsen, Søren Balling
  • Manfred Roessle
  • John Clarkson
  • Ewan W. Blanch
  • Clair Baldock
  • Cay M. Kielty
  • Timothy J. Wess

Fibrillin-rich microfibrils are essential elastic structures contained within the extracellular matrix of a wide variety of connective tissues. Microfibrils are characterized as beaded filamentous structures with a variable axial periodicity (average 56 nm in the untensioned state); however, the basis of their elasticity remains unknown. This study used a combination of small angle x-ray scattering and Raman microscopy to investigate further the packing of microfibrils within the intact tissue and to determine the role of molecular reorganization in the elasticity of these microfibrils. The application of relatively small strains produced no overall change in either molecular or macromolecular microfibrillar structure. In contrast, the application of larger tissue extensions (up to 150%) resulted in a markedly different structure, as observed by both Raman microscopy and small angle x-ray scattering. These changes occurred at different levels of architecture and are interpreted as ranging from alterations in peptide bond conformation to domain rearrangement. This study demonstrates the importance of molecular elasticity in the mechanical properties of fibrillin-rich microfibrils in the intact tissue.

OriginalsprogEngelsk
TidsskriftJournal of Biological Chemistry
Vol/bind278
Udgave nummer42
Sider (fra-til)41189-41197
Antal sider9
ISSN0021-9258
DOI
StatusUdgivet - 17 okt. 2003

ID: 306673465