Rapid molecular evolution of pain insensitivity in multiple African rodents.

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Bibliographic Details
Title: Rapid molecular evolution of pain insensitivity in multiple African rodents.
Authors: Eigenbrod, Ole (AUTHOR), Debus, Karlien Y. (AUTHOR), Reznick, Jane (AUTHOR), Bennett, Nigel C. (AUTHOR), Sánchez-Carranza, Oscar (AUTHOR), Omerbašić, Damir (AUTHOR), Hart, Daniel W. (AUTHOR), Barker, Alison J. (AUTHOR), Zhong, Wei (AUTHOR), Lutermann, Heike (AUTHOR), Katandukila, Jestina V. (AUTHOR), Mgode, Georgies (AUTHOR), Park, Thomas J. (AUTHOR), Lewin, Gary R. (AUTHOR)
Source: Science (pre-March 2025). 5/31/2019, Vol. 364 Issue 6443, p852-859. 8p. 5 Diagrams.
Subjects: Pain tolerance, Molecular evolution, RNA sequencing, Capsaicin, Hydrogen chloride, Isothiocyanates, Rodent evolution
Geographic Terms: Africa
Abstract: Noxious substances, called algogens, cause pain and are used as defensive weapons by plants and stinging insects. We identified four previously unknown instances of algogen-insensitivity by screening eight African rodent species related to the naked mole-rat with the painful substances capsaicin, acid (hydrogen chloride, pH 3.5), and allyl isothiocyanate (AITC). Using RNA sequencing, we traced the emergence of sequence variants in transduction channels, like transient receptor potential channel TRPA1 and voltage-gated sodium channel Nav1.7, that accompany algogen insensitivity. In addition, the AITC-insensitive highveld mole-rat exhibited overexpression of the leak channel NALCN (sodium leak channel, nonselective), ablating AITC detection by nociceptors.These molecular changes likely rendered highveld mole-rats immune to the stings of the Natal droptail ant.Our study reveals how evolution can be used as a discovery tool to find molecular mechanisms that shut down pain. [ABSTRACT FROM AUTHOR]
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Database: Psychology and Behavioral Sciences Collection
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Abstract:Noxious substances, called algogens, cause pain and are used as defensive weapons by plants and stinging insects. We identified four previously unknown instances of algogen-insensitivity by screening eight African rodent species related to the naked mole-rat with the painful substances capsaicin, acid (hydrogen chloride, pH 3.5), and allyl isothiocyanate (AITC). Using RNA sequencing, we traced the emergence of sequence variants in transduction channels, like transient receptor potential channel TRPA1 and voltage-gated sodium channel Nav1.7, that accompany algogen insensitivity. In addition, the AITC-insensitive highveld mole-rat exhibited overexpression of the leak channel NALCN (sodium leak channel, nonselective), ablating AITC detection by nociceptors.These molecular changes likely rendered highveld mole-rats immune to the stings of the Natal droptail ant.Our study reveals how evolution can be used as a discovery tool to find molecular mechanisms that shut down pain. [ABSTRACT FROM AUTHOR]
ISSN:00368075
DOI:10.1126/science.aau0236