Biologyarticle2026-09-02

Activation of transposable elements is linked to a region- and cell type–specific interferon response in Parkinson’s disease

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Abstract

Abstract Parkinson’s disease (PD) is a neurodegenerative disorder involving a neuroinflammatory response, the cause of which remains unclear. Transposable elements (TE) have been linked to inflammation, but their potential role in PD remains unexplored. Using bulk- and single-nuclei RNAseq of postmortem brain tissue from four brain regions, we studied TE transcription and its correlation with PD neuroinflammation. Over a thousand TEs, including LINE-1s and ERVs, were expressed in a cell-type and region-specific manner in the human brain. Increased TE expression was found in microglia and neurons in the substantia nigra and putamen of PD brains, but not amygdala or prefrontal cortex, compared to controls. This TE activation correlated with an innate immune response in the same brain regions. The link between an interferon response and TE activation was mechanistically confirmed using human pluripotent stem cell-derived microglia and neurons. Our findings provide insights into TE transcription in the PD brain and suggest TEs may contribute to neuroinflammation and pathological progression in PD. Teaser: Transposable elements are linked to a cell type specific inflammatory state in Parkinson’s Disease.

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View paper (DOI)Open access versionOpenAlexScience AdvancesPublished 2026-09-02

Authors: Raquel Garza, Anita Adami, Arun Thiruvalluvan, Sasvi S. Wijesinghe, Annabel J. Curle, Oliver H. Tam, Talitha Forcier, Danai A Lagka, Nina-Lydia Kazakou, Diahann A. M. Atacho, Yogita Sharma, Vivien Horváth, Sara Bermudez, Jenny Johansson, Daniel B. Rainbow, Laura Castilla‐Vallmanya, Joanne Jones, Annelies Quaegebeur, Molly Hammell, Agnete Kirkeby, Roger A. Barker, Johan Jakobsson

Institutions: Imperial College London, KU Leuven, University of Cambridge, Lund University, Cambridge University Hospitals NHS Foundation Trust, Novo Nordisk Foundation, UK Dementia Research Institute, Institute for Systems Biology, Wellcome/MRC Cambridge Stem Cell Institute, Research Network (United States), Center for Neuro-Oncology