Mammalian AHR2 loss: Evolutionary patterns, mechanisms, and relevance of biological factors.

Fuente: PubMed
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Autores principales: Song, Woo-Seon, Koh, Dong-Hee, Kim, Dong Ha, Nomiyama, Kei, Iwata, Hisato, Kim, Eun-Young
Formato: Artículo científico
Lenguaje:en
Publicado: Ecotoxicology and environmental safety 2026
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author Song, Woo-Seon
Koh, Dong-Hee
Kim, Dong Ha
Nomiyama, Kei
Iwata, Hisato
Kim, Eun-Young
author_facet Song, Woo-Seon
Koh, Dong-Hee
Kim, Dong Ha
Nomiyama, Kei
Iwata, Hisato
Kim, Eun-Young
Song, Woo-Seon
Koh, Dong-Hee
Kim, Dong Ha
Nomiyama, Kei
Iwata, Hisato
Kim, Eun-Young
collection PubMed - marine biology
contents Mammalian AHR2 loss: Evolutionary patterns, mechanisms, and relevance of biological factors. Song, Woo-Seon Koh, Dong-Hee Kim, Dong Ha Nomiyama, Kei Iwata, Hisato Kim, Eun-Young Animals Receptors, Aryl Hydrocarbon Mammals Biological Evolution Evolution, Molecular Female Polychlorinated Dibenzodioxins Environmental Pollutants Environmental contamination by dioxins and polycyclic aromatic hydrocarbons threatens wildlife health, yet the molecular basis of interspecies variation in toxicological sensitivity remains poorly understood. The aryl hydrocarbon receptor (AHR) mediates dioxin-like responses and typically exists as two isoforms (AHR1 and AHR2) across vertebrates but mammals exhibit a unique evolutionary restructuring characterized by widespread loss of AHR2. To elucidate the evolutionary patterns and mechanisms underlying mammalian AHR2 loss and its relevance to interspecies pollutant sensitivity, we analyzed AHR2 retention, expression, and function across 220 mammalian species. AHR2 was retained in only 29 % of species, restricted to marsupials and select placental lineages (Felidae, Perissodactyla, Proboscidea, and Pinnipedia), contrasting sharply with universal multi-isoform retention in other vertebrates. Retention declined from 100 % in monotremes to 17.1 % in derived placentals, coinciding with placental evolution. Even where retained, AHR2 expression was negligible across tissues (
format Artículo científico
id pubmed_41702107
institution PubMed
language en
publishDate 2026
publisher Ecotoxicology and environmental safety
record_format pubmed
spellingShingle Mammalian AHR2 loss: Evolutionary patterns, mechanisms, and relevance of biological factors.
Song, Woo-Seon
Koh, Dong-Hee
Kim, Dong Ha
Nomiyama, Kei
Iwata, Hisato
Kim, Eun-Young
Animals
Receptors, Aryl Hydrocarbon
Mammals
Biological Evolution
Evolution, Molecular
Female
Polychlorinated Dibenzodioxins
Environmental Pollutants
Mammalian AHR2 loss: Evolutionary patterns, mechanisms, and relevance of biological factors. Song, Woo-Seon Koh, Dong-Hee Kim, Dong Ha Nomiyama, Kei Iwata, Hisato Kim, Eun-Young Animals Receptors, Aryl Hydrocarbon Mammals Biological Evolution Evolution, Molecular Female Polychlorinated Dibenzodioxins Environmental Pollutants Environmental contamination by dioxins and polycyclic aromatic hydrocarbons threatens wildlife health, yet the molecular basis of interspecies variation in toxicological sensitivity remains poorly understood. The aryl hydrocarbon receptor (AHR) mediates dioxin-like responses and typically exists as two isoforms (AHR1 and AHR2) across vertebrates but mammals exhibit a unique evolutionary restructuring characterized by widespread loss of AHR2. To elucidate the evolutionary patterns and mechanisms underlying mammalian AHR2 loss and its relevance to interspecies pollutant sensitivity, we analyzed AHR2 retention, expression, and function across 220 mammalian species. AHR2 was retained in only 29 % of species, restricted to marsupials and select placental lineages (Felidae, Perissodactyla, Proboscidea, and Pinnipedia), contrasting sharply with universal multi-isoform retention in other vertebrates. Retention declined from 100 % in monotremes to 17.1 % in derived placentals, coinciding with placental evolution. Even where retained, AHR2 expression was negligible across tissues (
title Mammalian AHR2 loss: Evolutionary patterns, mechanisms, and relevance of biological factors.
topic Animals
Receptors, Aryl Hydrocarbon
Mammals
Biological Evolution
Evolution, Molecular
Female
Polychlorinated Dibenzodioxins
Environmental Pollutants
url https://pubmed.ncbi.nlm.nih.gov/41702107/