文石
方解石
生物矿化
碳酸钙
无定形碳酸钙
珊瑚
结晶
材料科学
碳酸盐
结晶学
化学工程
矿物学
化学
地质学
有机化学
海洋学
冶金
复合材料
工程类
作者
Rotem Gavriel,Merav Nadav‐Tsubery,Yehonatan Glick,Alina Yarmolenko,Renana Kofman,Keren Keinan‐Adamsky,Amir Berman,Tali Mass,Gil Goobes
标识
DOI:10.1002/adfm.201707321
摘要
Abstract Stony corals construct their aragonite skeleton by calcium carbonate precipitation, in a process recently suggested to be biologically controlled. Amorphous calcium carbonate and small amounts of calcite are also reported recently, however, their functional role is unknown. Coral acid‐rich proteins (CARPs) are extracted from the coral skeleton and are shown to be active in calcium carbonate precipitation in vitro. However, individual function of these proteins in coral mineralization is not known. Here, the regulatory activity of the aspartate‐rich CARP3 protein is examined. The whole protein and two peptides representing its acidic domain and its variable domain are used in CaCO 3 precipitation reactions from Mg‐rich solutions. The biomolecules alter crystallization pathways, promoting Mg‐calcite in place of aragonite, with the acidic peptide capable of eradicating aragonite formation. The activity of CARP3 and its representative peptides is exerted from disordered CaCO 3 mineral phases, coating the crystals formed, as shown by 2D 1 H– 13 C heteronuclear correlation nuclear magnetic resonance (NMR) measurements, localizing organic protons in atomic proximity to disordered carbonate carbons. The structures of the protein and individual domains as derived from NMR measurements and folding calculations and their amino acid compositions are discussed in the context of their observed activity and its implication to mineralization in hard corals.
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