NF-κB Immunity in the Brain Determines Fly Lifespan in Healthy Aging and Age-Related Neurodegeneration
During aging, innate immunity progresses to a chronically active state. However, what distinguishes those that “age well” from those developing age-related neurological conditions is unclear. We used Drosophila to explore the cost of immunity in the aging brain. We show that mutations in intracellul...
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doaj-b66a2dec93694e12bea5e7953fe613f72020-11-25T01:30:15ZengElsevierCell Reports2211-12472017-04-0119483684810.1016/j.celrep.2017.04.007NF-κB Immunity in the Brain Determines Fly Lifespan in Healthy Aging and Age-Related NeurodegenerationIlias Kounatidis0Stanislava Chtarbanova1Yang Cao2Margaret Hayne3Dhruv Jayanth4Barry Ganetzky5Petros Ligoxygakis6Cell Biology, Development, and Genetics Laboratory, Department of Biochemistry, University of Oxford, South Park Road, Oxford OX1 3QU, UKLaboratory of Genetics, 425-G Henry Mall, University of Wisconsin, Madison, WI 53706-1580, USALaboratory of Genetics, 425-G Henry Mall, University of Wisconsin, Madison, WI 53706-1580, USALaboratory of Genetics, 425-G Henry Mall, University of Wisconsin, Madison, WI 53706-1580, USACell Biology, Development, and Genetics Laboratory, Department of Biochemistry, University of Oxford, South Park Road, Oxford OX1 3QU, UKLaboratory of Genetics, 425-G Henry Mall, University of Wisconsin, Madison, WI 53706-1580, USACell Biology, Development, and Genetics Laboratory, Department of Biochemistry, University of Oxford, South Park Road, Oxford OX1 3QU, UKDuring aging, innate immunity progresses to a chronically active state. However, what distinguishes those that “age well” from those developing age-related neurological conditions is unclear. We used Drosophila to explore the cost of immunity in the aging brain. We show that mutations in intracellular negative regulators of the IMD/NF-κB pathway predisposed flies to toxic levels of antimicrobial peptides, resulting in early locomotor defects, extensive neurodegeneration, and reduced lifespan. These phenotypes were rescued when immunity was suppressed in glia. In healthy flies, suppressing immunity in glial cells resulted in increased adipokinetic hormonal signaling with high nutrient levels in later life and an extension of active lifespan. Thus, when levels of IMD/NF-κB deviate from normal, two mechanisms are at play: lower levels derepress an immune-endocrine axis, which mobilizes nutrients, leading to lifespan extension, whereas higher levels increase antimicrobial peptides, causing neurodegeneration. Immunity in the fly brain is therefore a key lifespan determinant.http://www.sciencedirect.com/science/article/pii/S2211124717304825DrosophilaNF-κBImdRelishbraininnate immunitylifespan |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ilias Kounatidis Stanislava Chtarbanova Yang Cao Margaret Hayne Dhruv Jayanth Barry Ganetzky Petros Ligoxygakis |
spellingShingle |
Ilias Kounatidis Stanislava Chtarbanova Yang Cao Margaret Hayne Dhruv Jayanth Barry Ganetzky Petros Ligoxygakis NF-κB Immunity in the Brain Determines Fly Lifespan in Healthy Aging and Age-Related Neurodegeneration Cell Reports Drosophila NF-κB Imd Relish brain innate immunity lifespan |
author_facet |
Ilias Kounatidis Stanislava Chtarbanova Yang Cao Margaret Hayne Dhruv Jayanth Barry Ganetzky Petros Ligoxygakis |
author_sort |
Ilias Kounatidis |
title |
NF-κB Immunity in the Brain Determines Fly Lifespan in Healthy Aging and Age-Related Neurodegeneration |
title_short |
NF-κB Immunity in the Brain Determines Fly Lifespan in Healthy Aging and Age-Related Neurodegeneration |
title_full |
NF-κB Immunity in the Brain Determines Fly Lifespan in Healthy Aging and Age-Related Neurodegeneration |
title_fullStr |
NF-κB Immunity in the Brain Determines Fly Lifespan in Healthy Aging and Age-Related Neurodegeneration |
title_full_unstemmed |
NF-κB Immunity in the Brain Determines Fly Lifespan in Healthy Aging and Age-Related Neurodegeneration |
title_sort |
nf-κb immunity in the brain determines fly lifespan in healthy aging and age-related neurodegeneration |
publisher |
Elsevier |
series |
Cell Reports |
issn |
2211-1247 |
publishDate |
2017-04-01 |
description |
During aging, innate immunity progresses to a chronically active state. However, what distinguishes those that “age well” from those developing age-related neurological conditions is unclear. We used Drosophila to explore the cost of immunity in the aging brain. We show that mutations in intracellular negative regulators of the IMD/NF-κB pathway predisposed flies to toxic levels of antimicrobial peptides, resulting in early locomotor defects, extensive neurodegeneration, and reduced lifespan. These phenotypes were rescued when immunity was suppressed in glia. In healthy flies, suppressing immunity in glial cells resulted in increased adipokinetic hormonal signaling with high nutrient levels in later life and an extension of active lifespan. Thus, when levels of IMD/NF-κB deviate from normal, two mechanisms are at play: lower levels derepress an immune-endocrine axis, which mobilizes nutrients, leading to lifespan extension, whereas higher levels increase antimicrobial peptides, causing neurodegeneration. Immunity in the fly brain is therefore a key lifespan determinant. |
topic |
Drosophila NF-κB Imd Relish brain innate immunity lifespan |
url |
http://www.sciencedirect.com/science/article/pii/S2211124717304825 |
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