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Functional Analyses of MMPs for Aragonite Crystal Formation in the Ligament of Pinctada fucata
- Source :
- Frontiers in Marine Science, Vol 5 (2018)
- Publication Year :
- 2018
- Publisher :
- Frontiers Media, 2018.
-
Abstract
- The mollusk class, Bivalvia, plays an important role in the formation of calcium carbonate in the ocean. The bivalve hinge ligament is a hard but pliant tissue that resists the stress placed on the hinge during opening and closing. The ligament comprises a fine microstructure of fibrous aragonite crystals surrounded by a dense organic matrix. The matrix consists of organic fibers that are aligned with the fibrous aragonite crystals. Previous studies identified a tissue inhibitor of metalloproteinase (Pf-TIMP: Pinctada fucata-Tissue Inhibitor of Metalloproteinase) in the organic fibers of P. fucata ligaments. This enzyme exhibited strong inhibition of matrix metalloproteinase (MMP) activity in vitro, suggesting that MMPs also play a role in formation of the organic fibers of the ligament. Using transcriptome data, we identified MMP genes from the mantle isthmus, which is a soft tissue attached to the ligament. To investigate the function of MMP genes in vivo, we performed RNA interference experiments. The expression of MMP14973 and MMP07860 genes was inhibited after injection of each dsRNA. Cumulative injection of MMP07860 dsRNA induced aggregated aragonite fiber orientation, whereas the injection of MMP14973 showed minor effects. When the decalcified ligament was incubated in a solution saturated with calcium carbonate, aragonite fibers aligned along the surface. When the decalcified ligament was treated with recombinant human (hr) MMP-13, the precipitation of calcium carbonate was inhibited. To investigate general MMP functions in calcium carbonate crystallization in detail, we precipitated aragonite crystals in collagen gels treated with or without recombinant human (hr) MMP-1. Treatment with hrMMP-1 increased the interaction between collagen gels and calcium carbonate. These results imply that Pinctada fucata (Pf)-MMPs degrade extracellular matrices in the ligament to produce the fine organic fibers that regulate the orientation of fibrous aragonite crystals.
- Subjects :
- 0301 basic medicine
lcsh:QH1-199.5
Ocean Engineering
02 engineering and technology
lcsh:General. Including nature conservation, geographical distribution
Aquatic Science
Matrix metalloproteinase
engineering.material
Oceanography
aragonite
03 medical and health sciences
chemistry.chemical_compound
ligament
Extracellular
medicine
Pinctada fucata
lcsh:Science
Water Science and Technology
Global and Planetary Change
biology
Chemistry
Aragonite
matrix metalloproteinase (MMP)
Tissue inhibitor of metalloproteinase
biomineralization
021001 nanoscience & nanotechnology
biology.organism_classification
030104 developmental biology
Calcium carbonate
medicine.anatomical_structure
Biophysics
engineering
Ligament
lcsh:Q
0210 nano-technology
Biomineralization
Subjects
Details
- Language :
- English
- ISSN :
- 22967745
- Volume :
- 5
- Database :
- OpenAIRE
- Journal :
- Frontiers in Marine Science
- Accession number :
- edsair.doi.dedup.....7cc59e9a8b77c1f7edbe1c8a65fb41d3
- Full Text :
- https://doi.org/10.3389/fmars.2018.00373/full