Rare variants in IFFO1, DTNB and NLRC3 associate with Alzheimer’s disease CSF profile of neuronal injury and inflammation

Author:

Neumann AlexanderORCID,Küçükali FahriORCID,Bos IsabelleORCID,Vos Stephanie J.B.ORCID,Engelborghs SebastiaanORCID,De Pooter TimORCID,Joris Geert,De Rijk PeterORCID,De Roeck Ellen,Tsolaki MagdaORCID,Verhey FransORCID,Martinez-Lage Pablo,Tainta MikelORCID,Frisoni GiovanniORCID,Blin Oliver,Richardson Jill,Bordet Régis,Scheltens PhilipORCID,Popp JuliusORCID,Peyratout Gwendoline,Johannsen Peter,Frölich Lutz,Vandenberghe RikORCID,Freund-Levi YvonneORCID,Streffer JohannesORCID,Lovestone SimonORCID,Legido-Quigley CristinaORCID,Kate Mara tenORCID,Barkhof FrederikORCID,Strazisar MojcaORCID,Zetterberg HenrikORCID,Bertram LarsORCID,Visser Pieter JelleORCID,van Broeckhoven ChristineORCID,Sleegers KristelORCID, ,

Abstract

AbstractAlzheimer’s disease (AD) biomarkers represent several neurodegenerative processes, such as synaptic dysfunction, neuronal inflammation and injury, as well as amyloid pathology. We performed an exome-wide rare variant analysis of six AD biomarkers (β-amyloid, total/phosphorylated tau, Nfl, YKL-40, and Neurogranin) to discover genes associated with these markers. Genetic and biomarker information was available for 480 participants from two studies: EMIF-AD and ADNI. We applied a principal component (PC) analysis to derive biomarkers combinations, which represent statistically independent biological processes. We then tested whether rare variants in 9,576 protein-coding genes associate with these PCs using a Meta-SKAT test. We also tested whether the PCs are intermediary to gene effects on AD symptoms with a SMUT test. One PC loaded on Nfl and YKL-40, indicators of neuronal injury and inflammation. Three genes were associated with this PC: IFFO1, DTNB and NLRC3. Mediation tests suggest, that these genes also affect dementia symptoms via inflammation/injury. We also observed an association between a PC loading on Neurogranin, a marker for synaptic functioning, with GABBR2 and CASZ1, but no mediation effects. The results suggest that rare variants in IFFO1, DTNB and NLRC3 heighten susceptibility to neuronal injury and inflammation, potentially by altering cytoskeleton structure and immune activity disinhibition, resulting in an elevated dementia risk. GABBR2 and CASZ1 were associated with synaptic functioning, but mediation analyses suggest that the effect of these two genes on synaptic functioning is not consequential for AD development.

Publisher

Cold Spring Harbor Laboratory

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