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Updated: May 28, 2026

Quantitative 3D In Silico Modeling (q3DISM) of Cerebral Amyloid-beta Phagocytosis in Rodent Models of Alzheimer's Disease
Published on: December 26, 2016
Reduced SH3RF3 May Protect Against Alzheimer's Disease by Lowering Microglial Pro-Inflammatory Responses via
Ronak Patel1, Rong Cheng2, Christopher L Cardona3
1Taub Institute for Research on Alzheimer's Disease and the Aging Brain, Columbia University Irving Medical Center (CUIMC), New York, New York, USA.
Abstract:
Understanding how high-risk individuals are protected from Alzheimer's disease (AD) may illuminate potential therapeutic targets. We identified protective genetic variants in SH3RF3/POSH2 that delayed the onset of AD among individuals carrying the PSEN1G206A mutation. SH3RF3 acts as a JNK pathway scaffold and activates NFκB signaling. While the effects of SH3RF3 knockdown in human neurons were subtle, including decreased pTau S422, knockdown in human microglia significantly reduced inflammatory cytokines in response to either a viral mimic or oAβ42. This was associated with reduced activation of JNK and NFκB pathways in response to these stimuli. Pharmacological inhibition of JNK or NFκB signaling phenocopied SH3RF3 knockdown. We also found PSEN1G206A microglia had a reduced inflammatory response to oAβ42. Thus, further reduction of microglial inflammatory responses in PSEN1G206A mutant carriers by protective variants in SH3RF3 might reduce the link between amyloid and neuroinflammation to subsequently delay the onset of AD.
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