Retrotransposon gag-like 1 (RTL1) and the molecular evolution of self-targeting imprinted microRNAs

Avantika Mainieri1, David Haig2

  • 1Department of Organismic and Evolutionary Biology, Harvard University, Cambridge, MA, USA.

Biology Direct
|October 24, 2019
PubMed
Abstract

Insights

A novel microRNA (miR-434) evolved to regulate RTL1 protein, impacting placental development. This self-targeting mechanism, unique in evolution, ensures maternal alleles reduce offspring demands.

Area of Science:

  • Genetics
  • Evolutionary Biology
  • Developmental Biology

Background:

  • RTL1 gene transcription produces sense mRNA and antisense microRNAs, with opposite imprinting patterns.
  • RTL1 protein, derived from retrotransposons, plays a role in placental development.
  • Sense mRNA is targeted for degradation by antisense microRNAs.

Purpose of the Study:

  • To present an evolutionary model for a novel self-targeting microRNA.
  • To explain how this microRNA regulates RTL1 protein production based on parental origin.

Main Methods:

  • Analysis of microRNAs (miR-431 and miR-434) at the RTL1 locus.
  • Development of an evolutionary model for microRNA establishment.
  • Investigation of imprinting and allele interactions.

Main Results:

  • miR-431 and miR-434 originate from tandem repeats within the RTL1 locus.
  • A new self-targeting microRNA inhibits RTL1 protein production when maternally inherited in heterozygotes.
  • This inhibition is not observed when the microRNA is paternally inherited.

Conclusions:

  • The interaction between RTL1 sense and antisense transcripts acts as allele communication, resembling a greenbeard effect.
  • Complementarity between microRNAs and mRNA ensures evolutionary stability of this interaction.
  • MicroRNA-mRNA cooperation may reduce maternal load in homozygous offspring.

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