AI Article Synopsis

  • C2H2-type zinc finger proteins (C2H2-ZFPs) are crucial transcription factors in eukaryotes, yet their role in birds is less understood compared to mammals.
  • This study annotates 301 C2H2-ZFPs in chicken, discovering unique characteristics such as the fast evolution of KRAB-ZFPs and a lineage-specific SCAN-ZFP prevalent in reproductive tissues.
  • The research also highlights tissue-specific expression patterns among C2H2-ZFPs, particularly their enrichment in early embryo development, providing insights into their evolutionary significance and potential functions in avian species.

Article Abstract

As the most abundant class of transcription factors in eukaryotes, C2H2-type zinc finger proteins (C2H2-ZFPs) play critical roles in various biological processes. Despite being extensively studied in mammals, C2H2-ZFPs remain poorly characterized in birds. Recent accumulation of multi-omics data for chicken enables the genome-wide investigation of C2H2-ZFPs in birds. The purpose of this study is to reveal the genomic occurrence and evolutionary signature of chicken C2H2-ZFPs, and further depict their expression profiles across diverse chicken tissues. Here, we annotated 301 C2H2-ZFPs in chicken genome, which are associated with different effector domains, including KRAB, BTB, HOMEO, PHD, SCAN, and SET. Among them, most KRAB-ZFPs lack orthologues in mammals and tend to form clusters by duplication, supporting their fast evolution in chicken. We also annotated a unique and previously unidentified SCAN-ZFP, which is lineage-specific and highly expressed in ovary and testis. By integrating 101 RNA-seq datasets for 32 tissues, we found that most C2H2-ZFPs have tissue-specific expression. Particularly, 74 C2H2-ZFPs-including 27 KRAB-ZFPs-show blastoderm-enriched expression, indicating their association with early embryo development. Overall, this study performs comprehensive annotation and expression profiling of C2H2 ZFPs in diverse chicken tissues, which gives new insights into the evolution and potential function of C2H2-ZFPs in avian species.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11476951PMC
http://dx.doi.org/10.3390/ijms251910525DOI Listing

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