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PMID: 20522652 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Accelerated lipofuscinosis and ubiquitination in granulin knockout mice suggest a role for progranulin in successful aging.

The American journal of pathology ·Vol. 177 ·No. 1 ·2010-07-00 ·Pages 311-24

Ahmed Z, Sheng H, Xu YF, Lin WL, Innes AE, Gass J, Yu X, Wuertzer CA, Hou H, Chiba S, Yamanouchi K, Leissring M, Petrucelli L, Nishihara M, Hutton ML, McGowan E, Dickson DW, Lewis J

Abstract

Progranulin (PGRN) is involved in wound repair, inflammation, and tumor formation, but its function in the central nervous system is unknown. Roles in development, sexual differentiation, and long-term neuronal survival have been suggested. Mutations in the GRN gene resulting in partial loss of the encoded PGRN protein cause frontotemporal lobar degeneration with ubiquitin immunoreactive inclusions. We sought to understand the neuropathological consequences of loss of PGRN function throughout the lifespan of GRN-deficient ((-/+) and (-/-)) mice. An aged series of GRN-deficient and wild-type mice were compared by histology, immunohistochemistry, and electron microscopy. Although GRN-deficient mice were viable, GRN(-/-) mice were produced at lower than predicted frequency. Neuropathologically, GRN(-/+) were indistinguishable from controls; however, GRN(-/-) mice developed age-associated, abnormal intraneuronal ubiquitin-positive autofluorescent lipofuscin. Lipofuscin was noted in aged GRN(+/+) mice at levels comparable with those of young GRN(-/-) mice. GRN(-/-) mice developed microgliosis, astrogliosis, and tissue vacuolation, with focal neuronal loss and severe gliosis apparent in the oldest GRN(-/-) mice. Although no overt frontotemporal lobar degeneration with ubiquitin immunoreactive inclusions type- or TAR DNA binding protein-43-positive lesions were observed, robust lipofuscinosis and ubiquitination in GRN(-/-) mice is strikingly similar to changes associated with aging and cellular decline in humans and animal models. Our data suggests that PGRN plays a key role in maintaining neuronal function during aging and supports the notion that PGRN is a trophic factor essential for long-term neuronal survival.

MeSH Terms
Aging/physiology Animals Brain/cytology,metabolism,pathology Humans Intercellular Signaling Peptides and Proteins/genetics,metabolism Mice Mice, Knockout Neuronal Ceroid-Lipofuscinoses/genetics,metabolism,pathology Neurons/cytology,metabolism Progranulins Ubiquitin/metabolism Ubiquitination
Chemicals
Intercellular Signaling Peptides and Proteins Progranulins Ubiquitin
Authors & Affiliations
18 authors, click to expand affiliations / ORCID
Ahmed Zeshan
Department of Neuroscience, Mayo Clinic College of Medicine, Jacksonville, Florida, USA.
Sheng Hong
Xu Ya-Fei
Lin Wen-Lang
Innes Amy E
Gass Jennifer
Yu Xin
Wuertzer Charles A
Hou Harold
Chiba Shuichi
Yamanouchi Keitaro
Leissring Malcolm
Petrucelli Leonard
Nishihara Masugi
Hutton Michael L
McGowan Eileen
Dickson Dennis W
Lewis Jada
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Article Info
Journal
The American journal of pathology
Abbr.
Am J Pathol
ISSN
1525-2191
Published
2010-07-00
Epub
2010-00-03
Pages
311-24
Language
English
Region
United States
NLM ID
0370502
PMCID
PMC2893674
Subset
IM
Grants
NIA NIH HHS · P50 AG016574 · United States
Corrections
ErratumIn
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