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March 23, 2005Journal of Cell Science779 citations

Procollagen trafficking, processing and fibrillogenesis

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ECElizabeth G. CantyKKKarl E. Kadler

Key Points

  • Summarize the molecular mechanisms governing procollagen trafficking, enzymatic processing, and directional fibril assembly in the extracellular matrix.
  • Synthesized molecular and cellular findings on procollagen transport through the secretory pathway.
  • Evaluated enzymatic cleavage mechanisms mediated by procollagen metalloproteinases and membrane-associated fibril assembly.
  • Procollagen precursors undergo intracellular trafficking through the secretory pathway before enzymatic conversion to collagen by procollagen metalloproteinases.
  • Directional deposition of insoluble three-dimensional fibril arrays is coordinated by the plasma membrane and late secretory components.
  • Surface-targeted fibril-associated molecules regulate collagen fibril diameter and inter-fibrillar structural interactions.

Abstract

Collagen fibrils in the extracellular matrix allow connective tissues such as tendon, skin and bone to withstand tensile forces. The fibrils are indeterminate in length, insoluble and form elaborate three-dimensional arrays that extend over numerous cell lengths. Studies of the molecular basis of collagen fibrillogenesis have provided insight into the trafficking of procollagen (the precursor of collagen) through the cellular secretory pathway, the conversion of procollagen to collagen by the procollagen metalloproteinases, and the directional deposition of fibrils involving the plasma membrane and late secretory pathway. Fibril-associated molecules are targeted to the surface of collagen fibrils, and these molecules play an important role in regulating the diameter and interactions between the fibrils.

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Cite This Study

Canty et al. (2005) studied this question.

synapsesocial.com/papers/69d89b7ba5ecc596b5d17d97https://doi.org/10.1242/jcs.01731
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