Evidence map›Paper›PMID 41029246›Full record

ArticleBMC ecology and evolution2025

Functional mutations in the thyroid-stimulating hormone receptor in natural stickleback populations at sites identical to human disease-causing mutations.

Jun Kitano, Mana Sato, Hiyu Kanbe, Genta Okude, Asano Ishikawa, Yukinori Kazeto, Takashi Makino

Abstract read
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Article in BMC ecology and evolution, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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4 · The record

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5 · Who and what money

Authors and funding

7 authors.

Jun KitanoEcological Genetics Laboratory, National Institute of Genetics, Yata 1111, Mishima, Shizuoka, 411-8540, Japan. jkitano@nig.ac.jp.
Mana SatoEcological Genetics Laboratory, National Institute of Genetics, Yata 1111, Mishima, Shizuoka, 411-8540, Japan.
Hiyu KanbeEcological Genetics Laboratory, National Institute of Genetics, Yata 1111, Mishima, Shizuoka, 411-8540, Japan.
Genta OkudeEcological Genetics Laboratory, National Institute of Genetics, Yata 1111, Mishima, Shizuoka, 411-8540, Japan.
Asano IshikawaEcological Genetics Laboratory, National Institute of Genetics, Yata 1111, Mishima, Shizuoka, 411-8540, Japan.
Yukinori KazetoMinamiizu Field Station, Fisheries Technology Institute, Japan Fisheries Research and Education Agency, Kamo, Shizuoka, Japan.
Takashi MakinoDepartment of Molecular and Chemical Life Sciences, Graduate School of Life Sciences, Tohoku University, Sendai, Japan.

Funding

Japan Science and Technology Corporation JPMJCR20S2Japan Society for the Promotion of Science 22H04983
6 · The paper itself

Abstract

backgroundThyroid hormones regulate multiple physiological functions, including metabolism, reproduction, and metamorphosis. Although there are variations in thyroid hormone signaling between populations and species, the causative mutations underlying these variations have rarely been identified. Here, we investigated whether information regarding the causative genes and mutations responsible for human thyroid diseases could assist with the identification of functional mutations in natural stickleback populations, which vary in thyroid hormone signaling between marine and stream-resident ecotypes. We first determined whether Japanese stickleback populations carry mutations at orthologous sites to those carrying non-synonymous mutations causing thyroid diseases in humans and then evaluated their effects using a heterologous mammalian cell line.

resultsWe found that several stickleback populations carry non-synonymous mutations in the thyroid-stimulating hormone receptor 2 (Tshr2) gene. Using a heterologous cell culture system and recombinant stickleback thyroid-stimulating hormone (TSH) 1 and TSH2, we first showed that TSHR2 responds to TSH2, but not TSH1. We also found that amino acid changes in TSHR2 at orthologous sites to those at which loss-of-function mutations have been reported in humans similarly reduce TSHR2 function in the stickleback. In contrast, an amino acid change at the site of a gain-of-function mutation in humans increased receptor function. Furthermore, we also found that TSHR1 and TSHR2 are expressed in the throat area and the brain, respectively, suggesting subfunctionalization.

conclusionNatural stickleback populations carry functional mutations in a gene involved in thyroid hormone signaling at orthologous sites to those that are responsible for disease in humans. These results suggest that human disease-causing mutations can be informative in the search for functional mutations in natural animal populations.

Indexed as

Fish ProteinsMutationReceptors, ThyrotropinSmegmamorphaAnimalsHumansFish ProteinsReceptors, ThyrotropinFreshwaterGasterosteus aculeatusGasterosteus nipponicusGene duplicationHuman gene mutation databaseHypothyroidismJapan Sea sticklebackPhotoperiodThreespine sticklebackThyrotropin

Identifiers

PMID41029246
PMCPMC12481769

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