Identification, Cloning and Expression of Ferritin M-like Subunit from the Indian Oyster, Magallana bilineata (Röding, 1798)

Arshad, Esha and Pradeep, M A and Kumar, Gokhlesh and Dhanutha, N R and Nisha, E A and Azhar Shahansha, T S and Vijayan, K K (2026) Identification, Cloning and Expression of Ferritin M-like Subunit from the Indian Oyster, Magallana bilineata (Röding, 1798). Genes, 17 (3). pp. 1-18. ISSN 2073-4425

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Official URL: https://www.mdpi.com/2073-4425/17/3/330

Abstract

Ferritins are key iron-sequestering proteins that maintain cellular homeostasis by storing iron in a bioavailable and nontoxic form. They also contribute to innate immunity, cellular proliferation and differentiation, shell formation, and protection against oxidative stress. In this study, we identified and characterized the M-type subunit of ferritin (Mbi-Fer) from the Indian backwater oyster, Magallana bilineata (Röding, 1798). A full-length cDNA of Mbi-Fer was sequenced and analyzed, and its gene expression was quantified in oysters collected from their natural habitat. Additionally, the coding region of Mbi-Fer was transformed and expressed in Escherichia coli, and the recombinant protein was purified and analyzed. Mbi-Fer exhibited all the typical features of M-type ferritins, including the ferroxidation site of the H subunit and the nucleation core of the L subunit. The amino acid sequence alignment and phylogenetic analysis showed high similarity to the M-type ferritin subunits of Magallana gigas (Thunberg, 1793). A putative iron-responsive element was identified in the 5′ UTR, indicating potential post-transcriptional regulation. Mbi-Fer expression in wild oysters was increased by more than fourfold, relative to laboratory-maintained control oysters. The recombinant expression result revealed a unique protein band that was specific to a ferritin M-like subunit, with an approximately molecular weight of 20 kDa. Conclusions: Our findings suggest that Mbi-Fer may play a role in both the iron storage and shell formation of backwater oysters and may serve as a valuable molecular marker of oxidative and environmental stress responses in estuarine bivalves.

Item Type: Article
Uncontrolled Keywords: Indian backwater oyster; ferritin; M type subunit; iron-responsive element; Mbi-Fer
Subjects: Molluscan Fisheries > Bivalves
Fish Biotechnology
Fish Genetics
Divisions: CMFRI-Kochi > Marine Biotechnology, Fish Nutrition and Health Division
Subject Area > CMFRI > CMFRI-Kochi > Marine Biotechnology, Fish Nutrition and Health Division
CMFRI-Kochi > Marine Biotechnology, Fish Nutrition and Health Division
Subject Area > CMFRI-Kochi > Marine Biotechnology, Fish Nutrition and Health Division
Subject Area > CMFRI Publications > CMFRI Pamphlets > CMFRI-Kochi > Marine Biotechnology, Fish Nutrition and Health Division
Depositing User: Arun Surendran
Date Deposited: 27 Jul 2026 09:47
Last Modified: 27 Jul 2026 09:47
URI: http://eprints.cmfri.org.in/id/eprint/19872

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