ArticleBMC genomic data2022
Tandem repeats ubiquitously flank and contribute to translation initiation sites.
Article in BMC genomic data, 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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10 citing papers in PubMed, 23 citations in OpenAlex.
- Tandem repeats in human brain evolution and disease susceptibility.Molecules and cells · 2026Review
- A directionally evolved genomic feature in BRSK2 harbors divergent alleles in neurocognitive disorders.Scientific reports · 2025Article
- Minimal repeats are ubiquitous sites of crossover and recombination across the human genome.BMC genomics · 2025Article
- Genomic insights and comparative analysis ofFrontiers in microbiology · 2025Article
- Different mCherry isoforms show distinct photophysical properties in FRET tandem constructs.Frontiers in bioengineering and biotechnology · 2025Article
- A Hypermutable Region in the DISP2 Gene Links to Natural Selection and Late-Onset Neurocognitive Disorders in Humans.Molecular neurobiology · 2024Article
- Novel crossover and recombination hotspots massively spread across primate genomes.Biology direct · 2024Article
- Dyads of GGC and GCC form hotspot colonies that coincide with the evolution of human and other great apes.BMC genomic data · 2024Article
- Genomic comparison between twoFrontiers in genetics · 2023Article
- Global abundance of short tandem repeats is non-random in rodents and primates.BMC genomic data · 2022Article
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Authors and funding
5 authors at 4 institutions in 2 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundWhile the evolutionary divergence of cis-regulatory sequences impacts translation initiation sites (TISs), the implication of tandem repeats (TRs) in TIS selection remains largely elusive. Here, we employed the TIS homology concept to study a possible link between TRs of all core lengths and repeats with TISs.
methodsHuman, as reference sequence, and 83 other species were selected, and data was extracted on the entire protein-coding genes (n = 1,611,368) and transcripts (n = 2,730,515) annotated for those species from Ensembl 102. Following TIS identification, two different weighing vectors were employed to assign TIS homology, and the co-occurrence pattern of TISs with the upstream flanking TRs was studied in the selected species. The results were assessed in 10-fold cross-validation.
resultsOn average, every TIS was flanked by 1.19 TRs of various categories within its 120 bp upstream sequence, per species. We detected statistically significant enrichment of non-homologous human TISs co-occurring with human-specific TRs. On the contrary, homologous human TISs co-occurred significantly with non-human-specific TRs. 2991 human genes had at least one transcript, TIS of which was flanked by a human-specific TR. Text mining of a number of the identified genes, such as CACNA1A, EIF5AL1, FOXK1, GABRB2, MYH2, SLC6A8, and TTN, yielded predominant expression and functions in the human brain and/or skeletal muscle.
conclusionWe conclude that TRs ubiquitously flank and contribute to TIS selection at the trans-species level. Future functional analyses, such as a combination of genome editing strategies and in vitro protein synthesis may be employed to further investigate the impact of TRs on TIS selection.
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