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Genetic Diversity of a Heat Activated Channel-TRPV1 in Two Desert Gerbil Species with Different Heat Sensitivity. | LitMetric

Genetic Diversity of a Heat Activated Channel-TRPV1 in Two Desert Gerbil Species with Different Heat Sensitivity.

Int J Mol Sci

State key Laboratory of Integrated Management of Pests Insects and Rodents, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China.

Published: May 2023

AI Article Synopsis

  • Heat sensation and tolerance are key for the survival and distribution of small mammals, and TRPV1 is a transmembrane protein that plays a role in these processes.
  • The study focused on Mongolian gerbils, which exhibit less sensitivity to heat compared to mid-day gerbils, highlighting a phenotypic difference despite similar TRPV1 mRNA levels in both species.
  • Genetic analysis revealed two single amino acid mutations in the TRPV1 gene of the two gerbil species, suggesting that these mutations could be linked to their differing heat sensitivity and contributing to the understanding of TRPV1's evolutionary mechanisms in small mammals.

Article Abstract

Heat sensation and tolerance are crucial for determining species' survival and distribution range of small mammals. As a member of the transmembrane proteins, transient receptor potential vanniloid 1 (TRPV1) is involved in the sensation and thermoregulation of heat stimuli; however, the associations between animal's heat sensitivity and TRPV1 in wild rodents are less studied. Here, we found that Mongolian gerbils (), a rodent species living in Mongolia grassland, showed an attenuated sensitivity to heat compared with sympatrically distributed mid-day gerbils () based on a temperature preference test. To explain this phenotypical difference, we measured the TRPV1 mRNA expression of two gerbil species in the hypothalamus, brown adipose tissue, and liver, and no statistical difference was detected between two species. However, according to the bioinformatics analysis of TRPV1 gene, we identified two single amino acid mutations on two TRPV1 orthologs in these two species. Further Swiss-model analyses of two TRPV1 protein sequences indicated the disparate conformations at amino acid mutation sites. Additionally, we confirmed the haplotype diversity of TRPV1 in both species by expressing TRPV1 genes ectopicly in system. Taken together, our findings supplemented genetic cues to the association between the discrepancy of heat sensitivity and the functional differentiation of TRPV1 using two wild congener gerbils, promoting the comprehension of the evolutionary mechanisms of the TRPV1 gene for heat sensitivity in small mammals.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10252964PMC
http://dx.doi.org/10.3390/ijms24119123DOI Listing

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