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Profiling of Transcriptome-Wide N6-Methyladenosine (m6A) Modifications and Identifying m6A Associated Regulation in Sperm Tail Formation in . | LitMetric

Profiling of Transcriptome-Wide N6-Methyladenosine (m6A) Modifications and Identifying m6A Associated Regulation in Sperm Tail Formation in .

Int J Mol Sci

National Institute of Parasitic Diseases, Chinese Center for Disease Control and Prevention (Chinese Center for Tropical Diseases Research), NHC Key Laboratory of Parasite and Vector Biology, WHO Collaborating Center for Tropical Diseases, National Center for International Research on Tropical Diseases, Shanghai 200025, China.

Published: April 2022

AI Article Synopsis

  • Recent studies found a special chemical change called m6A on RNA in mosquitoes, which helps control how genes are expressed.
  • This change is important for male and female mosquitoes, affecting their specific traits and functions.
  • Understanding how m6A works could help us find new ways to control mosquitoes, which can spread diseases.

Article Abstract

Recent discoveries of reversible N6-methyladenosine (m6A) methylation on messenger RNA (mRNA) and mapping of m6A methylomes in many species have revealed potential regulatory functions of this RNA modification by m6A players-writers, readers, and erasers. Here, we first profile transcriptome-wide m6A in female and male and reveal that m6A is also a highly conserved modification of mRNA in mosquitoes. Distinct from mammals and yeast but similar to , m6A in is enriched not only around the stop codon and within 3'-untranslated regions but also around the start codon and 5'-UTR. Gene ontology analysis indicates the unique distribution pattern of m6A in is associated with mosquito sex-specific pathways such as tRNA wobble uridine modification and phospholipid-binding in females, and peptidoglycan catabolic process, exosome and signal recognition particle, endoplasmic reticulum targeting, and RNA helicase activity in males. The positive correlation between m6A deposition and mRNA abundance indicates that m6A can play a role in regulating gene expression in mosquitoes. Furthermore, many spermatogenesis-associated genes, especially those related to mature sperm flagellum formation, are positively modulated by m6A methylation. A transcriptional regulatory network of m6A in is first profiled in the present study, especially in spermatogenesis, which may provide a new clue for the control of this disease-transmitting vector.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9101273PMC
http://dx.doi.org/10.3390/ijms23094630DOI Listing

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