ArticleMolecular biology and evolution2018
Novel Bioinformatics Approach Identifies Transcriptional Profiles of Lineage-Specific Transposable Elements at Distinct Loci in the Human Dorsolateral Prefrontal Cortex.
Article in Molecular biology and evolution, 2018. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 25 papers.
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Who cites it
25 citing papers in PubMed, 61 citations in OpenAlex.
- Review
- Transposable Elements Seed Transcription Factor Binding Sites to Sequence-Specific Double-Stranded DNA Binding TF Networks Contributing to Governance of Primate Brain Evolution.Journal of molecular evolution · 2026Article
- Cooperation of transposable elements to endow global networks of initiators of hybrid assembly pathways of endogenous multiprotein complexes.Frontiers in cellular and infection microbiology · 2026Article
- Somatic Mosaicism in Brain Disorders.Annual review of pathology · 2025Review
- VAMP7j: A Splice Variant of Human VAMP7 That Modulates Neurite Outgrowth by Regulating L1CAM Transport to the Plasma Membrane.International journal of molecular sciences · 2023Article
- Evolutionarily recent retrotransposons contribute to schizophrenia.Translational psychiatry · 2023Article
- Maternal immune activation alters placental histone-3 lysine-9 tri-methylation, offspring sensorimotor processing, and hypothalamic transposable element expression in a sex-specific manner.Neurobiology of stress · 2023Article
- Evolutionarily recent retrotransposons contribute to schizophrenia.Research square · 2023Article
- The landscape of hervRNAs transcribed from human endogenous retroviruses across human body sites.Genome biology · 2022Article
- A retrotransposon storm marks clinical phenoconversion to late-onset Alzheimer's disease.GeroScience · 2022Article
- The Role of Transposable Elements of the Human Genome in Neuronal Function and Pathology.International journal of molecular sciences · 2022Review
- Novel open reading frames in human accelerated regions and transposable elements reveal new leads to understand schizophrenia and bipolar disorder.Molecular psychiatry · 2022Article
- Genetic polymorphism data support a relationship between schizophrenia and microsatellite variability in PLA2G4A in Northern Europeans not Han Chinese.American journal of medical genetics. Part B, Neuropsychiatric genetics : the official publication of the International Society of Psychiatric Genetics · 2022Article
- Bridging the Gap Between Environmental Adversity and Neuropsychiatric Disorders: The Role of Transposable Elements.Frontiers in genetics · 2022Review
- Corticosterone dynamically regulates retrotransposable element expression in the rat hippocampus and C6 cells.Neurobiology of stress · 2021Article
- Transposable elements and their KZFP controllers are drivers of transcriptional innovation in the developing human brain.Genome research · 2021Article
- Retrotransposons as Drivers of Mammalian Brain Evolution.Life (Basel, Switzerland) · 2021Review
- LINE retrotransposons characterize mammalian tissue-specific and evolutionarily dynamic regulatory regions.Genome biology · 2021Article
- Genomics-Guided Drawing of Molecular and Pathophysiological Components of Malignant Regulatory Signatures Reveals a Pivotal Role in Human Diseases of Stem Cell-Associated Retroviral Sequences and Functionally-Active hESC Enhancers.Frontiers in oncology · 2021Article
- Genomic and Transcriptomic Survey Provides New Insight into the Organization and Transposition Activity of Highly Expressed LTR Retrotransposons of Sunflower (International journal of molecular sciences · 2020Article
Corrections and comments
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Authors and funding
7 authors at 5 institutions in 2 countries.
Funding
Abstract
Expression of transposable elements (TE) is transiently activated during human preimplantation embryogenesis in a developmental stage- and cell type-specific manner and TE-mediated epigenetic regulation is intrinsically wired in developmental genetic networks in human embryos and embryonic stem cells. However, there are no systematic studies devoted to a comprehensive analysis of the TE transcriptome in human adult organs and tissues, including human neural tissues. To investigate TE expression in the human Dorsolateral Prefrontal Cortex (DLPFC), we developed and validated a straightforward analytical approach to chart quantitative genome-wide expression profiles of all annotated TE loci based on unambiguous mapping of discrete TE-encoded transcripts using a de novo assembly strategy. To initially evaluate the potential regulatory impact of DLPFC-expressed TE, we adopted a comparative evolutionary genomics approach across humans, primates, and rodents to document conservation patterns, lineage-specificity, and colocalizations with transcription factor binding sites mapped within primate- and human-specific TE. We identified 654,665 transcripts expressed from 477,507 distinct loci of different TE classes and families, the majority of which appear to have originated from primate-specific sequences. We discovered 4,687 human-specific and transcriptionally active TEs in DLPFC, of which the prominent majority (80.2%) appears spliced. Our analyses revealed significant associations of DLPFC-expressed TE with primate- and human-specific transcription factor binding sites, suggesting potential cross-talks of concordant regulatory functions. We identified 1,689 TEs differentially expressed in the DLPFC of Schizophrenia patients, a majority of which is located within introns of 1,137 protein-coding genes. Our findings imply that identified DLPFC-expressed TEs may affect human brain structures and functions following different evolutionary trajectories. On one side, hundreds of thousands of TEs maintained a remarkably high conservation for ∼8 My of primates' evolution, suggesting that they are likely conveying evolutionary-constrained primate-specific regulatory functions. In parallel, thousands of transcriptionally active human-specific TE loci emerged more recently, suggesting that they could be relevant for human-specific behavioral or cognitive functions.
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