Integrated multimodal cell atlas of Alzheimer’s disease
Author:
Gabitto Mariano I.ORCID, Travaglini Kyle J.ORCID, Rachleff Victoria M.ORCID, Kaplan Eitan S.ORCID, Long BrianORCID, Ariza JeanelleORCID, Ding YiORCID, Mahoney Joseph T.ORCID, Dee NickORCID, Goldy JeffORCID, Melief Erica J.ORCID, Brouner KrissyORCID, Campos JazminORCID, Campos JohnORCID, Carr Ambrose J.ORCID, Casper TamaraORCID, Chakrabarty RushilORCID, Clark MichaelORCID, Cool JonahORCID, Valera Cuevas Nasmil J.ORCID, Dalley RachelORCID, Darvas MartinORCID, Ding Song-LinORCID, Dolbeare TimORCID, Mac Donald Christine L.ORCID, Egdorf TomORCID, Esposito LukeORCID, Ferrer RebeccaORCID, Gala RohanORCID, Gary AmandaORCID, Gloe JessicaORCID, Guilford NathanORCID, Guzman JunittaORCID, Hirschstein Daniel, Ho WindyORCID, Jarksy TimORCID, Johansen NelsonORCID, Kalmbach Brian E.ORCID, Keene Lisa M.ORCID, Khawand SarahORCID, Kilgore MitchORCID, Kirkland AmandaORCID, Kunst MichaelORCID, Lee Brian R.ORCID, Malone JocelinORCID, Maltzer ZoeORCID, Martin NaomiORCID, McCue RachelORCID, McMillen DelissaORCID, Meyerdierks EmmaORCID, Meyers Kelly P.ORCID, Mollenkopf TylerORCID, Montine MarkORCID, Nolan Amber L.ORCID, Nyhus JulieORCID, Olsen Paul A.ORCID, Pacleb MaiyaORCID, Peña Nicholas, Pham ThanhORCID, Pom Christina AliceORCID, Postupna NadiaORCID, Ruiz AugustinORCID, Schantz Aimee M.ORCID, Shapovalova Nadiya V.ORCID, Sorensen Staci A.ORCID, Staats BrianORCID, Sullivan MattORCID, Sunkin Susan M.ORCID, Thompson CarolORCID, Tieu MichaelORCID, Ting JonathanORCID, Torkelson AmyORCID, Tran TracyORCID, Wang Ming-QiangORCID, Waters JackORCID, Wilson Angela M.ORCID, Haynor DavidORCID, Gatto NicoleORCID, Jayadev SumanORCID, Mufti ShoaibORCID, Ng LydiaORCID, Mukherjee ShubhabrataORCID, Crane Paul K.ORCID, Latimer Caitlin S.ORCID, Levi Boaz P.ORCID, Smith KimberlyORCID, Close Jennie L.ORCID, Miller Jeremy A.ORCID, Hodge Rebecca D.ORCID, Larson Eric B.ORCID, Grabowski Thomas J.ORCID, Hawrylycz MichaelORCID, Dirk Keene C., Lein Ed S.ORCID
Abstract
AbstractAlzheimer’s disease (AD) is the most common cause of dementia in older adults. Neuropathological and imaging studies have demonstrated a progressive and stereotyped accumulation of protein aggregates, but the underlying molecular and cellular mechanisms driving AD progression and vulnerable cell populations affected by disease remain coarsely understood. The current study harnesses single cell and spatial genomics tools and knowledge from the BRAIN Initiative Cell Census Network to understand the impact of disease progression on middle temporal gyrus cell types. We used image-based quantitative neuropathology to place 84 donors spanning the spectrum of AD pathology along a continuous disease pseudoprogression score and multiomic technologies to profile single nuclei from each donor, mapping their transcriptomes, epigenomes, and spatial coordinates to a common cell type reference with unprecedented resolution. Temporal analysis of cell-type proportions indicated an early reduction of Somatostatin-expressing neuronal subtypes and a late decrease of supragranular intratelencephalic-projecting excitatory and Parvalbumin-expressing neurons, with increases in disease-associated microglial and astrocytic states. We found complex gene expression differences, ranging from global to cell type-specific effects. These effects showed different temporal patterns indicating diverse cellular perturbations as a function of disease progression. A subset of donors showed a particularly severe cellular and molecular phenotype, which correlated with steeper cognitive decline. We have created a freely available public resource to explore these data and to accelerate progress in AD research atSEA-AD.org.
Publisher
Cold Spring Harbor Laboratory
Cited by
13 articles.
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