A rare variant in MLKL confers susceptibility to ApoE ɛ4-negative Alzheimer's disease in Hong Kong Chinese population

Alzheimer's disease (AD) is the most common neurodegenerative disorders in the elderly. To identify rare genetic factors other than apolipoprotein E ɛ4 allele (ApoE ɛ4) contributing to the pathogenesis of late-onset AD (LOAD), we conducted a whole-exome analysis of 246 ApoE ɛ4-negative LOAD cas...

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Veröffentlicht in:Neurobiology of aging 2018-08, Vol.68, p.160.e1-160.e7
Hauptverfasser: Wang, Binbin, Bao, Suying, Zhang, Zhigang, Zhou, Xueya, Wang, Jing, Fan, Yanhui, Zhang, Yan, Li, Yan, Chen, Luhua, Jia, Yizhen, Li, Jiang, Li, Miaoxin, Zheng, Wenhua, Mu, Nan, Wang, Liqiu, Yu, Zhe, Wong, Dana S.M., Zhang, Yalun, Kwan, Joseph, Ka-Fung Mak, Henry, Ambalavanan, Amirthagowri, Zhou, Sirui, Cai, Wangwei, Zheng, Jin, Huang, Shishu, Rouleau, Guy A., Yang, Wanling, Rogaeva, Ekaterina, Ma, Xu, St George-Hyslop, Peter, Chu, Leung Wing, Song, You-Qiang
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Sprache:eng
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Zusammenfassung:Alzheimer's disease (AD) is the most common neurodegenerative disorders in the elderly. To identify rare genetic factors other than apolipoprotein E ɛ4 allele (ApoE ɛ4) contributing to the pathogenesis of late-onset AD (LOAD), we conducted a whole-exome analysis of 246 ApoE ɛ4-negative LOAD cases and 172 matched controls in Hong Kong Chinese population. LOAD patients showed a significantly higher burden of rare loss-of-function variants in genes related to immune function than healthy controls. Among the genes involved in immune function, we identified a rare stop-gain variant (p.Q48X) in mixed lineage kinase domain like pseudokinase (MLKL) gene present exclusively in 6 LOAD cases. MLKL is expressed in neurons, and the its expression levels in the p.Q48X carriers were significantly lower than that in age-matched wild-type controls. The ratio of Aβ42 to Aβ40 significantly increased in MLKL knockdown cells compared to scramble controls. MLKL loss-of-function mutation might contribute to late-onset ApoE ɛ4-negative AD in the Hong Kong Chinese population.
ISSN:0197-4580
1558-1497
DOI:10.1016/j.neurobiolaging.2018.03.006