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Biology subjects

Chik, K.

Publications and source records attributed to Chik, K..

2 recordsLinked to original sources

Protective ApoE variants support neuronal function by extracting peroxidated lipids

ApoE mediates the transport of lipids from neurons to glial lipid droplets. ApoE4, a major risk factor for Alzheimer's disease, impairs this transport pathway, increasing risk for neurodegeneration. ApoE2 and ApoE3 Christchurch (ApoE3Ch) variants confer resistance to developing the disease, yet little is known regarding how these protective variants affect lipid transport. Here, we explored how lipoprotein particles containing different ApoE isoforms affect neuronal health in vitro and in intact rodent hippocampi. We demonstrate that ApoE2 and ApoE3Ch particles protect neurons from ferroptosis by preferentially extracting peroxidated unsaturated lipids through the neuronal ABCA7 transporter. ApoE4 particles, on the other hand, exacerbate the effects of these toxic lipids leading to endolysosomal dysfunction. By reducing the peroxidated lipid burden in ApoE4 neurons, ApoE2 and ApoE3Ch particles rescue endolysosomal function and restore defects in neuronal activity. Our findings reveal a new mechanism by which ApoE2 and ApoE3Ch isoforms protect neurons from neurodegenerative disease.

neuroscience↗

Glucosylceramide induced ectosomes propagate pathogenic α-synuclein in Parkinson's disease

Intercellular transmission of -synuclein contributes to Parkinsons disease pathology. Yet, the mechanisms of -synuclein spread are not fully understood. Here, we used live-cell microscopy to examine the impact of Parkinsons disease associated lipid alterations on -synuclein release. We discovered that increased glucosylceramides induce ectosome shedding from primary neurons, and from dopaminergic neurons derived from Parkinsons disease patient iPSCs harboring mutations in GBA1 (N370S, L444P and W378G) and LRRK2 (G2019S and R1441H) compared to their isogenic control. We show that elevated glucosylceramide similarly increases vesicle release and uptake by other neurons in living mouse brains using 2-photon microscopy. Finally, we show that ectosomes are loaded with pathogenic -synuclein and lead to the transmission of -synuclein pathology to neighbouring neurons. These data reveal ectosomes as the predominant route for -synuclein transmission that can only be appreciated by live-cell imaging technologies.

cell biology↗