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Structural and Functional Classification of G-Quadruplex Families within the Human Genome. | LitMetric

Structural and Functional Classification of G-Quadruplex Families within the Human Genome.

Genes (Basel)

Kentucky IDeA Network of Biomedical Research Excellence (KY INBRE) Bioinformatics Core, University of Louisville, Louisville, KY 40292, USA.

Published: March 2023

AI Article Synopsis

  • G-quadruplexes (G4s) are unique DNA structures found in genomic DNA and RNA that have not been systematically classified or searched due to a lack of specialized tools.
  • A new framework has been developed using methods like CD-HIT and BLAST to group G4 sequences into 95 families in the human genome, creating detailed profiles for each.
  • These profiles consider various factors like thermodynamic properties and gene functions, aiming to enhance our understanding of genome regulation and the role of G4 structures in cellular processes.

Article Abstract

G-quadruplexes (G4s) are short secondary DNA structures located throughout genomic DNA and transcribed RNA. Although G4 structures have been shown to form in vivo, no current search tools that examine these structures based on previously identified G-quadruplexes and filter them based on similar sequence, structure, and thermodynamic properties are known to exist. We present a framework for clustering G-quadruplex sequences into families using the CD-HIT, MeShClust, and DNACLUST methods along with a combination of Starcode and BLAST. Utilizing this framework to filter and annotate clusters, 95 families of G-quadruplex sequences were identified within the human genome. Profiles for each family were created using hidden Markov models to allow for the identification of additional family members and generate homology probability scores. The thermodynamic folding energy properties, functional annotation of genes associated with the sequences, scores from different prediction algorithms, and transcription factor binding motifs within a family were used to annotate and compare the diversity within and across clusters. The resulting set of G-quadruplex families can be used to further understand how different regions of the genome are regulated by factors targeting specific structures common to members of a specific cluster.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10048163PMC
http://dx.doi.org/10.3390/genes14030645DOI Listing

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