6533b861fe1ef96bd12c596e

RESEARCH PRODUCT

Evolution of nacre: biochemistry and proteomics of the shell organic matrix of the cephalopod Nautilus macromphalus.

Frédéric MarinBenjamin MarieLaurent BédouetLionel DubostGilles LuquetGérard AlcarazChristian MiletArul Marie

subject

ProteomeShell (structure)ProteomicsBiochemistryCalcium Carbonate03 medical and health sciencesPaleontologychemistry.chemical_compoundproteomicsevolutionAnimals14. Life underwaterAmino Acid SequenceNautilus[SDV.IB.BIO]Life Sciences [q-bio]/Bioengineering/BiomaterialsMolecular BiologyChromatography High Pressure Liquid030304 developmental biologyCalciteNautilus macromphalus0303 health sciencesbiology030302 biochemistry & molecular biologyOrganic ChemistryProteinsbiology.organism_classificationbiomineralization[ SDV.IB.BIO ] Life Sciences [q-bio]/Bioengineering/BiomaterialsBiological EvolutionCephalopodCalcium carbonatechemistryChemical engineeringSolubilitySpectrometry Mass Matrix-Assisted Laser Desorption-IonizationMolecular MedicineNautilusNautilus macromphalusSequence AlignmentBiomineralizationmollusk shell nacre

description

12 pages; International audience; In mollusks, one of the most widely studied shell textures is nacre, the lustrous aragonitic layer that constitutes the internal components of the shells of several bivalves, a few gastropods, and one cephalopod: the nautilus. Nacre contains a minor organic fraction, which displays a wide range of functions in relation to the biomineralization process. Here, we have biochemically characterized the nacre matrix of the cephalopod Nautilus macromphalus. The acid-soluble matrix contains a mixture of polydisperse and discrete proteins and glycoproteins, which interact with the formation of calcite crystals. In addition, a few bind calcium ions. Furthermore, we have used a proteomic approach, which was applied to the acetic acid-soluble and -insoluble shell matrices, as well as to spots obtained after 2D gel electrophoresis. Our data demonstrate that the insoluble and soluble matrices, although different in their bulk monosaccharide and amino acid compositions, contain numerous shared peptides. Strikingly, most of the obtained partial sequences are entirely new. A few only partly match with bivalvian nacre proteins. Our findings have implications for knowledge of the long-term evolution of molluskan nacre matrices.

https://hal.archives-ouvertes.fr/hal-00392866