Loss of Lipid Carrier ApoE Exacerbates Brain Glial and Inflammatory Responses after Lysosomal GBA1 Inhibition

Author:

Connolly Kyle J.1ORCID,Margaria Juliette1,Di Biase Erika1ORCID,Cooper Oliver1,Hallett Penelope J.1ORCID,Isacson Ole1ORCID

Affiliation:

1. Departments of Psychiatry and Neurology Harvard Medical School, Neuroregeneration Institute, McLean Hospital, Belmont, MA 02478, USA

Abstract

Tightly regulated and highly adaptive lipid metabolic and transport pathways are critical to maintaining brain cellular lipid homeostasis and responding to lipid and inflammatory stress to preserve brain function and health. Deficits in the lipid handling genes APOE and GBA1 are the most significant genetic risk factors for Lewy body dementia and related dementia syndromes. Parkinson’s disease patients who carry both APOE4 and GBA1 variants have accelerated cognitive decline compared to single variant carriers. To investigate functional interactions between brain ApoE and GBA1, in vivo GBA1 inhibition was tested in WT versus ApoE-deficient mice. The experiments demonstrated glycolipid stress caused by GBA1 inhibition in WT mice induced ApoE expression in several brain regions associated with movement and dementia disorders. The absence of ApoE in ApoE-KO mice amplified complement C1q elevations, reactive microgliosis and astrocytosis after glycolipid stress. Mechanistically, GBA1 inhibition triggered increases in cell surface and intracellular lipid transporters ABCA1 and NPC1, respectively. Interestingly, the absence of NPC1 in mice also triggered elevations of brain ApoE levels. These new data show that brain ApoE, GBA1 and NPC1 functions are interconnected in vivo, and that the removal or reduction of ApoE would likely be detrimental to brain function. These results provide important insights into brain ApoE adaptive responses to increased lipid loads.

Funder

NIH/NIA

DoD

Consolidated Anti-Aging Foundation

Orchard Foundation

Harold and Ronna Cooper Family

Publisher

MDPI AG

Subject

General Medicine

Reference65 articles.

1. GBA and APOE Impact Cognitive Decline in Parkinson’s Disease: A 10-Year Population-Based Study;Szwedo;Mov. Disord.,2022

2. APOE ε4 is associated with severity of Lewy body pathology independent of Alzheimer pathology;Dickson;Neurology,2018

3. Distinct tau neuropathology and cellular profiles of an APOE3 Christchurch homozygote protected against autosomal dominant Alzheimer’s dementia;Sanchez;Acta Neuropathol.,2022

4. Novel Results and Concepts Emerging From Lipid Cell Biology Relevant to Degenerative Brain Aging and Disease;Isacson;Front. Neurol.,2019

5. APOE2, E3, and E4 differentially modulate cellular homeostasis, cholesterol metabolism, and inflammatory response in isogenic iPSC-derived astrocytes;Kirschner;Stem Cell Rep.,2021

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