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  GIMAP5 deficiency reveals a mammalian ceramide-driven longevity assurance pathway

Park, A. Y., Leney-Greene, M., Lynberg, M., Gabrielski, J. Q., Xu, X., Schwarz, B., et al. (2024). GIMAP5 deficiency reveals a mammalian ceramide-driven longevity assurance pathway. Nature Immunology. doi:10.1038/s41590-023-01691-y.

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2024
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Park, Ann Y1, Author
Leney-Greene, Michael1, Author
Lynberg, Matthew1, Author
Gabrielski, Justin Q1, Author
Xu, Xijin1, Author
Schwarz, Benjamin1, Author
Zheng, Lixin1, Author
Balasubramaniyam, Arasu1, Author
Ham, Hyoungjun1, Author
Chao, Brittany1, Author
Zhang, Yu1, Author
Matthews, Helen F1, Author
Cui, Jing1, Author
Yao, Yikun1, Author
Kubo, Satoshi1, Author
Chanchu, Jean Michel1, Author
Morawski, Aaron R1, Author
Cook, Sarah A1, Author
Jiang, Ping1, Author
Ravell, Juan C1, Author
Cheng, Yan H1, AuthorGeorge, Alex1, AuthorFaruqi, Aiman1, AuthorPagalilauan, Alison M1, AuthorBergerson, Jenna R E1, AuthorGanesan, Sundar1, AuthorChauvin, Samuel D1, AuthorAluri, Jahnavi1, AuthorEdwards-Hicks, Joy2, AuthorBohrnsen, Eric1, AuthorTippett, Caroline1, AuthorOmar, Habib1, AuthorXu, Leilei1, AuthorButcher, Geoffrey W1, AuthorPascall, John1, AuthorKarakoc-Aydiner, Elif1, AuthorKiykim, Ayca1, AuthorMaecker, Holden1, AuthorTezcan, İlhan1, AuthorEsenboga, Saliha1, AuthorHeredia, Raul Jimenez1, AuthorAkata, Deniz1, AuthorTekin, Saban1, AuthorKara, Altan1, AuthorKuloglu, Zarife1, AuthorUnal, Emel1, AuthorKendirli, Tanıl1, AuthorDogu, Figen1, AuthorKarabiber, Esra1, AuthorAtkinson, T Prescott1, AuthorCochet, Claude1, AuthorFilhol, Odile1, AuthorBosio, Catherine M1, AuthorDavis, Mark M1, AuthorLifton, Richard P1, AuthorPearce, Erika Laine2, Author           Daumke, Oliver1, AuthorAytekin, Caner1, AuthorŞahin, Gülseren Evirgen1, AuthorAksu, Aysel Ünlüsoy1, AuthorUzel, Gulbu1, AuthorRao, V Koneti1, AuthorSari, Sinan1, AuthorBoztug, Kaan1, AuthorCagdas, Deniz1, AuthorHaskologlu, Sule1, AuthorIkinciogullari, Aydan1, AuthorSchwefel, David1, AuthorVilarinho, Silvia1, AuthorBaris, Safa1, AuthorOzen, Ahmet1, AuthorSu, Helen C1, AuthorLenardo, Michael J1, Author more..
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1External Organizations, ou_persistent22              
2Department Immunometabolism, Max Planck Institute of Immunobiology and Epigenetics, Max Planck Society, ou_2243648              

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 Abstract: Preserving cells in a functional, non-senescent state is a major goal for extending human healthspans. Model organisms reveal that longevity and senescence are genetically controlled, but how genes control longevity in different mammalian tissues is unknown. Here, we report a new human genetic disease that causes cell senescence, liver and immune dysfunction, and early mortality that results from deficiency of GIMAP5, an evolutionarily conserved GTPase selectively expressed in lymphocytes and endothelial cells. We show that GIMAP5 restricts the pathological accumulation of long-chain ceramides (CERs), thereby regulating longevity. GIMAP5 controls CER abundance by interacting with protein kinase CK2 (CK2), attenuating its ability to activate CER synthases. Inhibition of CK2 and CER synthase rescues GIMAP5-deficient T cells by preventing CER overaccumulation and cell deterioration. Thus, GIMAP5 controls longevity assurance pathways crucial for immune function and healthspan in mammals.

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Language(s): eng - English
 Dates: 2024-01-03
 Publication Status: Published online
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 Identifiers: DOI: 10.1038/s41590-023-01691-y
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Title: Nature Immunology
  Other : Nat. Immunol.
Source Genre: Journal
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Publ. Info: New York, NY : Nature America Inc.
Pages: - Volume / Issue: - Sequence Number: - Start / End Page: - Identifier: ISSN: 1529-2908
CoNE: https://pure.mpg.de/cone/journals/resource/974392607073