Journal article
Gliovascular molecular alterations in Alzheimer’s disease: a cross‐tissue, cross‐species study
Alzheimer's & dementia, Vol.19(S13), e073806
12/2023
DOI: 10.1002/alz.073806
Abstract
Background Inter‐cellular communication within the gliovascular unit (GVU) is critical for cerebral blood flow regulation, and maintenance of the blood‐brain‐barrier (BBB) properties. The breakdown of BBB in Alzheimer’s disease (AD) is well‐established, but precise underlying molecular changes remain unclear. Additionally, whether GVU molecular alterations observed in AD brains are also detected in blood from living patients is unknown. Further, these GVU molecular perturbations require further investigation in different model systems to identify both human brain‐specific and cross‐species conserved alterations. In this study, we investigated prioritized GVU molecules altered in AD brains for their conservation in blood and cross‐species model systems. Methods We performed single nucleus RNA sequencing (snRNAseq) of temporal cortex tissue in AD and control brains. We analyzed this data to detect cell‐specific GVU molecular perturbations and their interactions. We investigated molecular interactions between vascular and astrocyte clusters, the major cell types of the GVU of the BBB. To determine whether GVU transcriptional alterations detected in the brain are preserved in the blood, existing blood expression, genetic, and neuroimaging data from two longitudinal antemortem cohorts were analyzed. Using model systems, including mouse, drosophila, and zebrafish, we evaluated the cross‐species conservation of the top GVU alterations detected in AD brains. Results Brain snRNAseq revealed transcriptional profiles of 6,541 astrocytes and 2,210 vascular cells. The latter formed three distinct vascular clusters characterized as pericytes, endothelia and perivascular fibroblasts. We identified differentially expressed genes and their enriched pathways within these clusters and observed the highest levels of transcriptional changes within pericytes. Vascular targets that interact with astrocytic ligands have biological functions in cell signaling, angiogenesis, amyloid ß metabolism, and cytoskeletal architecture. We discovered that genetic variants influencing blood expression levels of some of the prioritized GVU genes were associated with neuroimaging burden of cerebrovascular disease in living human cohorts. Our ongoing studies in model systems revealed conservation of some of the top prioritized molecular perturbations across species. Conclusion Our findings prioritized by multiscale, cross‐tissue human data revealed GVU perturbations within interacting pericyte and astrocyte molecules, which are conserved across multiple cross‐species models. These results nominate new molecular targets and mechanistic insights for BBB disruptions in AD.
Details
- Title: Subtitle
- Gliovascular molecular alterations in Alzheimer’s disease: a cross‐tissue, cross‐species study
- Creators
- Ozkan Is - Mayo Clinic in FloridaXue Wang - Mayo Clinic in FloridaJoseph S. Reddy - Mayo Clinic in FloridaTulsi Patel - Mayo Clinic in FloridaYuhao Min - Mayo Clinic in FloridaZachary Quicksall - Mayo Clinic in FloridaMichael G. Heckman - Mayo Clinic in FloridaJunli Gao - Mayo Clinic in FloridaJeremiah Bergman - Mayo Clinic in FloridaSandro Gabriel (Sandro Da Mesquita) Ferreira Da Mesquita - Mayo ClinicCaghan Kizil - Columbia University Irving Medical CenterPrabesh Bhattarai - Columbia University Irving Medical CenterMehmet I. Cosacak - German Center for Neurodegenerative DiseasesAnnie J Lee - Columbia University Irving Medical CenterBadri N Vardarajan - Columbia UniversityRichard Mayeux - Columbia UniversityShunsuke Koga - Mayo Clinic in FloridaTakahisa Kanekiyo - Mayo Clinic in FloridaLaunia J White - Mayo Clinic in FloridaNaomi Kouri - Mayo Clinic in FloridaKaancan Deniz - Mayo Clinic in FloridaFrederick Q Tutor-New - Mayo Clinic in FloridaTroy Carnwath - Mayo Clinic in FloridaStephanie R Oatman - Mayo Clinic in FloridaLaura Lewis-Tuffin - Mayo Clinic in FloridaThuy Nguyen - Mayo Clinic in FloridaMinerva M. Carrasquillo - Mayo Clinic in FloridaJonathan Graff Radford - Mayo Clinic in ArizonaRonald C. Petersen - Mayo Clinic in ArizonaClifford R. Jack - Mayo Clinic in ArizonaKejal Kantarci - Mayo Clinic in ArizonaKwangsik Nho - Indiana University – Purdue University IndianapolisAndrew J. Saykin - Indiana University – Purdue University IndianapolisDennis W. Dickson - Mayo Clinic in FloridaMelissa E. Murray - Mayo Clinic in FloridaMariet Allen - Mayo Clinic in FloridaNilufer Ertekin-Taner - Mayo Clinic in Florida
- Resource Type
- Journal article
- Publication Details
- Alzheimer's & dementia, Vol.19(S13), e073806
- DOI
- 10.1002/alz.073806
- ISSN
- 1552-5260
- eISSN
- 1552-5279
- Publisher
- Wiley
- Number of pages
- 1
- Language
- English
- Date published
- 12/2023
- Academic Unit
- Neurology
- Record Identifier
- 9985180926902771
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