Literature DB >> 35750033

Cholesterol and matrisome pathways dysregulated in astrocytes and microglia.

Julia Tcw1, Lu Qian2, Nina H Pipalia3, Michael J Chao4, Shuang A Liang5, Yang Shi6, Bharat R Jain5, Sarah E Bertelsen7, Manav Kapoor8, Edoardo Marcora9, Elizabeth Sikora7, Elizabeth J Andrews10, Alessandra C Martini10, Celeste M Karch11, Elizabeth Head12, David M Holtzman6, Bin Zhang13, Minghui Wang14, Frederick R Maxfield3, Wayne W Poon15, Alison M Goate16.   

Abstract

The impact of apolipoprotein E ε4 (APOE4), the strongest genetic risk factor for Alzheimer's disease (AD), on human brain cellular function remains unclear. Here, we investigated the effects of APOE4 on brain cell types derived from population and isogenic human induced pluripotent stem cells, post-mortem brain, and APOE targeted replacement mice. Population and isogenic models demonstrate that APOE4 local haplotype, rather than a single risk allele, contributes to risk. Global transcriptomic analyses reveal human-specific, APOE4-driven lipid metabolic dysregulation in astrocytes and microglia. APOE4 enhances de novo cholesterol synthesis despite elevated intracellular cholesterol due to lysosomal cholesterol sequestration in astrocytes. Further, matrisome dysregulation is associated with upregulated chemotaxis, glial activation, and lipid biosynthesis in astrocytes co-cultured with neurons, which recapitulates altered astrocyte matrisome signaling in human brain. Thus, APOE4 initiates glia-specific cell and non-cell autonomous dysregulation that may contribute to increased AD risk.
Copyright © 2022 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  APOE; Alzheimer; astrocytes; cholesterol; genetic heterogeneity; haplotypes; iPSC disease modeling; inflammation; matrisome; microglia

Mesh:

Substances:

Year:  2022        PMID: 35750033      PMCID: PMC9340815          DOI: 10.1016/j.cell.2022.05.017

Source DB:  PubMed          Journal:  Cell        ISSN: 0092-8674            Impact factor:   66.850


  123 in total

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5.  Meta-analysis of 74,046 individuals identifies 11 new susceptibility loci for Alzheimer's disease.

Authors:  J C Lambert; C A Ibrahim-Verbaas; D Harold; A C Naj; R Sims; C Bellenguez; A L DeStafano; J C Bis; G W Beecham; B Grenier-Boley; G Russo; T A Thorton-Wells; N Jones; A V Smith; V Chouraki; C Thomas; M A Ikram; D Zelenika; B N Vardarajan; Y Kamatani; C F Lin; A Gerrish; H Schmidt; B Kunkle; M L Dunstan; A Ruiz; M T Bihoreau; S H Choi; C Reitz; F Pasquier; C Cruchaga; D Craig; N Amin; C Berr; O L Lopez; P L De Jager; V Deramecourt; J A Johnston; D Evans; S Lovestone; L Letenneur; F J Morón; D C Rubinsztein; G Eiriksdottir; K Sleegers; A M Goate; N Fiévet; M W Huentelman; M Gill; K Brown; M I Kamboh; L Keller; P Barberger-Gateau; B McGuiness; E B Larson; R Green; A J Myers; C Dufouil; S Todd; D Wallon; S Love; E Rogaeva; J Gallacher; P St George-Hyslop; J Clarimon; A Lleo; A Bayer; D W Tsuang; L Yu; M Tsolaki; P Bossù; G Spalletta; P Proitsi; J Collinge; S Sorbi; F Sanchez-Garcia; N C Fox; J Hardy; M C Deniz Naranjo; P Bosco; R Clarke; C Brayne; D Galimberti; M Mancuso; F Matthews; S Moebus; P Mecocci; M Del Zompo; W Maier; H Hampel; A Pilotto; M Bullido; F Panza; P Caffarra; B Nacmias; J R Gilbert; M Mayhaus; L Lannefelt; H Hakonarson; S Pichler; M M Carrasquillo; M Ingelsson; D Beekly; V Alvarez; F Zou; O Valladares; S G Younkin; E Coto; K L Hamilton-Nelson; W Gu; C Razquin; P Pastor; I Mateo; M J Owen; K M Faber; P V Jonsson; O Combarros; M C O'Donovan; L B Cantwell; H Soininen; D Blacker; S Mead; T H Mosley; D A Bennett; T B Harris; L Fratiglioni; C Holmes; R F de Bruijn; P Passmore; T J Montine; K Bettens; J I Rotter; A Brice; K Morgan; T M Foroud; W A Kukull; D Hannequin; J F Powell; M A Nalls; K Ritchie; K L Lunetta; J S Kauwe; E Boerwinkle; M Riemenschneider; M Boada; M Hiltuenen; E R Martin; R Schmidt; D Rujescu; L S Wang; J F Dartigues; R Mayeux; C Tzourio; A Hofman; M M Nöthen; C Graff; B M Psaty; L Jones; J L Haines; P A Holmans; M Lathrop; M A Pericak-Vance; L J Launer; L A Farrer; C M van Duijn; C Van Broeckhoven; V Moskvina; S Seshadri; J Williams; G D Schellenberg; P Amouyel
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6.  Alzheimer's-associated PLCγ2 is a signaling node required for both TREM2 function and the inflammatory response in human microglia.

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7.  Digital sorting of complex tissues for cell type-specific gene expression profiles.

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Journal:  BMC Bioinformatics       Date:  2013-03-07       Impact factor: 3.169

8.  25-Hydroxycholesterol regulates cholesterol homeostasis in the murine CATH.a neuronal cell line.

Authors:  Sabine Waltl; Jay V Patankar; Günter Fauler; Christoph Nusshold; Andreas Ullen; Gerald Eibinger; Andrea Wintersperger; Dagmar Kratky; Ernst Malle; Wolfgang Sattler
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9.  Brain Cell Type Specific Gene Expression and Co-expression Network Architectures.

Authors:  Andrew T McKenzie; Minghui Wang; Mads E Hauberg; John F Fullard; Alexey Kozlenkov; Alexandra Keenan; Yasmin L Hurd; Stella Dracheva; Patrizia Casaccia; Panos Roussos; Bin Zhang
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  7 in total

1.  Astrocyte-secreted glypican-4 drives APOE4-dependent tau hyperphosphorylation.

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Journal:  Proc Natl Acad Sci U S A       Date:  2022-08-15       Impact factor: 12.779

Review 2.  APOE in the bullseye of neurodegenerative diseases: impact of the APOE genotype in Alzheimer's disease pathology and brain diseases.

Authors:  Rosalía Fernández-Calle; Sabine C Konings; Javier Frontiñán-Rubio; Juan García-Revilla; Lluís Camprubí-Ferrer; Martina Svensson; Isak Martinson; Antonio Boza-Serrano; José Luís Venero; Henrietta M Nielsen; Gunnar K Gouras; Tomas Deierborg
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Review 3.  Statins and cognition: Modifying factors and possible underlying mechanisms.

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4.  Sex and APOE Genotype Alter the Basal and Induced Inflammatory States of Primary Microglia from APOE Targeted Replacement Mice.

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Review 5.  HDL-like-Mediated Cell Cholesterol Trafficking in the Central Nervous System and Alzheimer's Disease Pathogenesis.

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Review 7.  Building in vitro models of the brain to understand the role of APOE in Alzheimer's disease.

Authors:  Rebecca L Pinals; Li-Huei Tsai
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  7 in total

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