A crayfish molar tooth protein with putative mineralized exoskeletal chitinous matrix c properties

Author:

Tynyakov Jenny12,Bentov Shmuel12,Abehsera Shai1,Yehezkel Galit3,Roth Ziv1,Khalaila Isam3,Weil Simy1,Berman Amir3,Plaschkes Inbar2,Tom Moshe4,Aflalo Eliahu D.12,Sagi Amir12

Affiliation:

1. Department of Life Sciences, Ben-Gurion University, P O. Box 653, Beer-Sheva 84105, Israel

2. National Institute for Biotechnology in the Negev, Ben-Gurion University, P O. Box 653, Beer-Sheva 84105, Israel

3. Department of Biotechnology Engineering, Ben-Gurion University, P O. Box 653, Beer-Sheva 84105, Israel

4. Israel Oceanographic and Limnological Research, Haifa 8511911, Israel

Abstract

Some crustaceans possess exoskeletons that are reinforced with calcium carbonate. In the crayfish Cherax quadricarinatus, the molar tooth, which is part of the mandibular exoskeleton, contains an unusual crystalline enamel-like apatite layer. As this layer resembles vertebrate enamel in composition and function, it offers an interesting example of convergent evolution. Unlike other parts of the crayfish exoskeleton, which is periodically shed and regenerated during the molt cycle, molar mineral deposition takes place during the pre-molt stage. The molar mineral composition transforms continuously from fluorapatite through amorphous calcium phosphate to amorphous calcium carbonate and is mounted on chitin. The process of crayfish molar formation is entirely extracellularand presumably controlled by proteins, lipids, polysaccharides, low-molecular weight molecules and calcium salts. We have identified a novel molar protein termed Cq-M15 from C. quadricarinatus and cloned its transcript from the molar-forming epithelium. Its transcript and differential expression were confirmed by a next generation sequencing library. The predicted acidic pI of Cq-M15 suggests its possible involvement in mineral arrangement. Cq-M15 is expressed in several exoskeletal tissues at pre-molt and its silencing is lethal. Like other arthropod cuticular proteins, Cq-M15 possesses a chitin-binding Rebers-Riddiford domain, with a recombinant version of the protein found to bind chitin. Cq-M15 was also found to interact with calcium ions in a concentration dependent manner. This latter property might make Cq-M15 useful for bone and dental regenerative efforts. We suggest that, in molar, this protein might be involved in calcium phosphate and/or carbonate precipitation.

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

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