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Updated: Jan 5, 2026

Analysis of LINE-1 Retrotransposition at the Single Nucleus Level
Published on: April 23, 2016
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.
Background:
Transcription of the antisense strand of RTL1 produces a sense mRNA that is targeted for degradation by antisense microRNAs transcribed from the sense strand. Translation of the mRNA produces a retrotransposon-derived protein that is implicated in placental development. The sense and antisense transcripts are oppositely imprinted: sense mRNAs are expressed from the paternally-derived chromosome, antisense microRNAs from the maternally-derived chromosome.
Results:
Two microRNAs at the RTL1 locus, miR-431 and the rodent-specific miR-434, are derived from within tandem repeats. We present an evolutionary model for the establishment of a new self-targeting microRNA derived from within a tandem repeat that inhibits production of RTL1 protein when maternally-derived in heterozygotes but not when paternally-derived.
Conclusions:
The interaction of sense and antisense transcripts can be interpreted as a form of communication between maternally-derived and paternally-derived RTL1 alleles that possesses many of the features of a greenbeard effect. This interaction is evolutionary stable, unlike a typical greenbeard effect, because of the necessary complementarity between microRNAs and mRNA transcribed from opposite strands of the same double helix. We conjecture that microRNAs and mRNA cooperate to reduce demands on mothers when an allele is paired with itself in homozygous offspring.
Reviewers:
This article was reviewed by Eugene Berezikov and Bernard Crespi.
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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