Novel CYP1B1-RMDN2 Alzheimer's disease locus identified by genome-wide association analysis of cerebral tau deposition on PET.
Kwangsik NhoShannon L RisacherLiana ApostolovaPaula J BiceJared BroschRachael DeardorffKelley FaberMartin R FarlowTatiana ForoudSujuan GaoThea J RosewoodJun Pyo KimKelly Nicole Holohan NudelmanMeichen YuPaul AisenReisa SperlingBasavaraj HooliSergey ShcherbininDiana SvaldiClifford R JackWilliam J JagustSusan LandauAparna VasanthakumarJeffrey F WaringVincent DoréSimon M LawsColin L MastersTenielle PorterChristopher C RoweVictor L VillemagneLogan DumitrescuTimothy J HohmanJulia B LibbyElizabeth MorminoRachel F BuckleyKeith JohnsonHyun-Sik YangRonald C PetersenVijay K RamananPrashanthi VemuriAnn D CohenKang-Hsien FanM Ilyas KambohOscar L LopezDavid A BennettMuhammad AliTammie L S BenzingerCruchaga CarlosDiana HobbsPhilip Lawrence De JagerMasashi FujitaVaishnavi JadhavBruce T LambAndy Po-Yi TsaiIsabel CastanhoJonathan S MillMichael W Weinernull nullnull nullnull nullnull nullAndrew J SaykinPublished in: medRxiv : the preprint server for health sciences (2023)
Determining the genetic architecture of Alzheimer's disease (AD) pathologies can enhance mechanistic understanding and inform precision medicine strategies. Here, we performed a genome-wide association study of cortical tau quantified by positron emission tomography in 3,136 participants from 12 independent studies. The CYP1B1-RMDN2 locus was associated with tau deposition. The most significant signal was at rs2113389, which explained 4.3% of the variation in cortical tau, while APOE4 rs429358 accounted for 3.6%. rs2113389 was associated with higher tau and faster cognitive decline. Additive effects, but no interactions, were observed between rs2113389 and diagnosis, APOE4 , and Aβ positivity. CYP1B1 expression was upregulated in AD. rs2113389 was associated with higher CYP1B1 expression and methylation levels. Mouse model studies provided additional functional evidence for a relationship between CYP1B1 and tau deposition but not Aβ. These results may provide insight into the genetic basis of cerebral tau and novel pathways for therapeutic development in AD.
Keyphrases
- cognitive decline
- cerebrospinal fluid
- positron emission tomography
- genome wide association study
- mild cognitive impairment
- computed tomography
- mouse model
- poor prognosis
- genome wide association
- pet ct
- genome wide
- adipose tissue
- dna methylation
- high fat diet
- type diabetes
- subarachnoid hemorrhage
- long non coding rna
- skeletal muscle