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Human myo-inositol monophosphatase 2 rescues the nematode thermotaxis mutant ttx-7 more efficiently than IMPA1: functional and evolutionary considerations of the two mammalian myo-inositol monophosphatase genes. | LitMetric

AI Article Synopsis

  • Mammals have two IMPase genes (IMPA1 and IMPA2) that show different expression patterns in various tissues, including the brain.
  • In C. elegans, the loss of the IMPase gene ttx-7 affects neuron behavior, but introducing human IMPA2 can correct this issue more effectively than IMPA1.
  • Knockout mice lacking Impa2 did not show behavioral issues or reduced myo-inositol levels, suggesting further investigation is needed into IMPA2's function and evolutionary history.

Article Abstract

Mammals express two myo-inositol monophosphatase (IMPase) genes, IMPA1/Impa1 and IMPA2/Impa2. In this study, we compared the spatial expression patterns of the two IMPase gene transcripts and proteins in mouse tissues. Results indicated discrete expression of the two IMPase genes and their protein products in various organs, including the brain. In Caenorhabditis elegans, loss of the IMPase gene, ttx-7, disrupts cellular polarity in RIA neurons, eliciting abnormal thermotaxis behavior. We performed a rescue experiment in mutant nematodes using mammalian IMPases. Human IMPA2 rescued the abnormal behavioral phenotype in the ttx-7 mutants more efficiently than IMPA1. These results raise a question about the phylogenetic origin of IMPases and the biological roles of mammalian IMPase 2 in mammals. Impa2 knockout mice generated in our laboratory, exhibited neither behavioral abnormalities nor a significant reduction in myo-inositol content in the brain and other examined tissues. Given the ability of human IMPA2 to rescue the ttx-7 mutant, and its genetic association with multiple neuropsychiatric disorders, close scrutiny of IMPA2 function and the evolutionary origin of IMPase genes is warranted.

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Source
http://dx.doi.org/10.1111/jnc.12112DOI Listing

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