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Granulovacuolar degeneration bodies are neuron-selective lysosomal structures induced by intracellular tau pathology

  • Center for Neurogenomics and Cognitive Research, 1081 HV Amsterdam, Netherlands
  • Department of Clinical Genetics, Amsterdam, Netherlands
  • Department of Pathology, Amsterdam, Netherlands
  • Institut du Cerveau et de la Moelle epiniere, Paris, France
  • Institute of Medical Genetics and Pathology, 4031 Basel, Switzerland
  • Department of Physiology, Amsterdam, Netherlands
  • Alzheimer Center, Amsterdam, Netherlands

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

Granulovacuolar degeneration bodies (GVBs) are membrane-bound vacuolar structures harboring a dense core that accumulate in the brains of patients with neurodegenerative disorders, including Alzheimer’s disease and other tauopathies. Insight into the origin of GVBs and their connection to tau pathology has been limited by the lack of suitable experimental models for GVB formation. Here, we used confocal, automated, super-resolution and electron microscopy to demonstrate that the seeding of tau pathology triggers the formation of GVBs in different mouse models in vivo and in primary mouse neurons in vitro. Seeding-induced intracellular tau aggregation, but not seed exposure alone, causes GVB formation in cultured neurons, but not in astrocytes. The extent of tau pathology strongly correlates with the GVB load. Tau-induced GVBs are immunoreactive for the established GVB markers CK1δ, CK1ɛ, CHMP2B, pPERK, peIF2α and pIRE1α and contain a LAMP1- and LIMP2-positive single membrane that surrounds the dense core and vacuole. The proteolysis reporter DQ-BSA is detected in the majority of GVBs, demonstrating that GVBs contain degraded endocytic cargo. GFP-tagged CK1δ accumulates in the GVB core, whereas GFP-tagged tau or GFP alone does not, indicating selective targeting of cytosolic proteins to GVBs. Taken together, we established the first in vitro model for GVB formation by seeding tau pathology in primary neurons. The tau-induced GVBs have the marker signature and morphological characteristics of GVBs in the human brain. We show that GVBs are lysosomal structures distinguished by the accumulation of a characteristic subset of proteins in a dense core.
Original languageEnglish
Pages (from-to)943-970
Number of pages28
JournalActa neuropathologica
Volume138
Issue number6
DOIs
Publication statusPublished - 1 Dec 2019

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Casein kinase 1 δ
  • Granulovacuolar degeneration bodies
  • Lysosome
  • Tau pathology

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