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Published on: January 12, 2015
Nucleotide sequence and expression of three subtypes of proopiomelanocortin mRNA in barfin flounder
Akiyoshi Takahashi1, Masafumi Amano, Toshihiro Itoh
1School of Fisheries Sciences, Kitasato University, Sanriku, Ofunato, Iwate 022-0101, Japan. akiyoshi@kitasato-u.ac.jp
Abstract:
Melanophore-stimulating hormone (MSH) has been shown to be associated with food intake in addition to body color change in teleosts. MSH is encoded by a proopiomelanocortin (POMC) gene together with endorphin (END). To assess the significance of MSH to biological activities, we determined the structure and evaluated the expression of POMC mRNA in barfin flounder (bf), Verasper moseri, a member of a group of teleosts, Pleuronectiformes. Three subtypes of POMC cDNAs (A, B, and C) were amplified from bf pituitary glands. These bfPOMCs contained segments for N-POMC, alpha-MSH, beta-MSH, and beta-END as do other teleost POMCs, while POMC-C showed remarkable variations in the segments corresponding to N-POMC and beta-END. A phylogenetic tree of ray-finned fish POMCs constructed by the neighbor joining method revealed that the three POMC subtypes may have appeared as a result of duplication events occurring at least twice during the course of bf evolution. The first duplication may have generated the lineage leading to an ancestor of bfPOMC-A and -B and that leading to bfPOMC-C, and then the lineage of bfPOMC-A may have diverged from that of bfPOMC-B. All peptides flanked by processing signals excluding N-POMC-C (1-14) were identified in a single pituitary extract by mass spectrometry, and the cDNAs of three POMCs were amplified from a single pituitary by reverse transcription polymerase chain reaction. These results demonstrated that the three POMC genes are expressed in a single individual. While the bfPOMC-A gene was exclusively expressed in the pituitary, the bfPOMC-B and -C genes were expressed in non-pituitary tissues such as brain, gill, heart, spleen, liver, stomach, intestine, testis, muscle, blood, and skin in addition to the pituitary. The expression levels of the POMC-A, -B, and -C genes in pituitary neurointermediate lobe were greater in the fish reared with a black background than the fish reared with a white background, indicating that MSH derived from all of the three bfPOMC genes was associated with body color change. No difference was observed in the expression levels of bfPOMC-C in the brain in response to feeding status.
Insights
Barfin flounder possess three proopiomelanocortin (POMC) genes (A, B, and C) that produce melanophore-stimulating hormone (MSH) involved in body color change. These genes show varied expression patterns, with POMC-A in the pituitary and POMC-B/C in multiple tissues.
Area of Science:
- Comparative genomics and molecular endocrinology in teleosts.
Background:
- Melanophore-stimulating hormone (MSH) influences body color and food intake in fish.
- Proopiomelanocortin (POMC) genes encode MSH and endorphins.
Purpose of the Study:
- To determine the structure and expression of POMC mRNA in barfin flounder (Verasper moseri).
- To assess the evolutionary significance and biological roles of MSH in barfin flounder.
Main Methods:
- Amplification and sequencing of three POMC cDNA subtypes (A, B, C) from pituitary glands.
- Phylogenetic analysis of ray-finned fish POMCs.
- Mass spectrometry and reverse transcription polymerase chain reaction (RT-PCR) for gene expression analysis.
Main Results:
- Three distinct barfin flounder POMC (bfPOMC) subtypes were identified, with POMC-C showing variations.
- Phylogenetic analysis suggests at least two gene duplication events in bfPOMC evolution.
- bfPOMC-A is pituitary-specific, while bfPOMC-B and -C are expressed in pituitary and various non-pituitary tissues.
- Expression of all three bfPOMC genes increased in response to a black background, indicating MSH's role in color change.
Conclusions:
- Barfin flounder possess three functional POMC genes, likely originating from gene duplications.
- Differential expression patterns suggest specialized roles for each bfPOMC subtype.
- MSH derived from all three bfPOMC genes contributes to adaptive body color changes in barfin flounder.
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