Effects of Exercise on Progranulin Levels and Gliosis in Progranulin-Insufficient Mice(1,2,3)

被引:6
作者
Arrant, Andrew E.
Patel, Aashka R.
Roberson, Erik D.
机构
[1] Univ Alabama Birmingham, Ctr Neurodegenerat & Expt Therapeut, Dept Neurol, Birmingham, AL USA
[2] Univ Alabama Birmingham, Ctr Neurodegenerat & Expt Therapeut, Dept Neurobiol, Birmingham, AL USA
基金
美国国家卫生研究院;
关键词
BDNF; exercise; frontotemporal dementia; progranulin;
D O I
10.1523/ENEURO.0061-14.2015
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Loss-of-function mutations in progranulin (GRN) are one of the most common genetic causes of frontotemporal dementia (FTD), a progressive, fatal neurodegenerative disorder with no available disease-modifying treatments. Through haploinsufficiency, these mutations reduce levels of progranulin, a protein that has neurotrophic and anti-inflammatory effects. Increasing progranulin expression from the intact allele is therefore a potential approach for treating individuals with GRN mutations. Based on the well-known effects of physical exercise on other neurotrophic factors, we hypothesized that exercise might increase brain progranulin levels. We tested this hypothesis in progranulin heterozygous (Grn(+/-)) mice, which model progranulin haploinsufficiency. We housed wild-type and progranulin-insufficient mice in standard cages or cages with exercise wheels for 4 or 7.5 weeks, and then measured brain and plasma progranulin levels. Although exercise modestly increased progranulin in very young (2-month-old) wild-type mice, this effect was limited to the hippocampus. Exercise did not increase brain progranulin mRNA or protein in multiple regions, nor did it increase plasma progranulin, in 4- to 8-month-old wild-type or Grn(+/-) mice, across multiple experiments and under conditions that increased hippocampal BDNF and neurogenesis. Grn(-/-) mice were included in the study to test for progranulin-independent benefits of exercise on gliosis. Exercise attenuated cortical microgliosis in 8-month-old Grn(-/-) mice, consistent with a progranulinindependent, anti-inflammatory effect of exercise. These results suggest that exercise may have some modest, nonspecific benefits for FTD patients with progranulin mutations, but do not support exercise as a strategy to raise progranulin levels.
引用
收藏
页数:12
相关论文
共 47 条
[1]   The exercise-induced expression of BDNF within the hippocampus varies across life-span [J].
Adlard, PA ;
Perreau, VM ;
Cotman, CW .
NEUROBIOLOGY OF AGING, 2005, 26 (04) :511-520
[2]   Voluntary exercise decreases amyloid load in a transgenic model of Alzheimer's disease [J].
Adlard, PA ;
Perreau, VM ;
Pop, V ;
Cotman, CW .
JOURNAL OF NEUROSCIENCE, 2005, 25 (17) :4217-4221
[3]   Accelerated Lipofuscinosis and Ubiquitination in Granulin Knockout Mice Suggest a Role for Progranulin in Successful Aging [J].
Ahmed, Zeshan ;
Sheng, Hong ;
Xu, Ya-fei ;
Lin, Wen-Lang ;
Innes, Amy E. ;
Gass, Jennifer ;
Yu, Xin ;
Hou, Harold ;
Chiba, Shuichi ;
Yamanouchi, Keitaro ;
Leissring, Malcolm ;
Petrucelli, Leonard ;
Nishihara, Masugi ;
Hutton, Michael L. ;
McGowan, Eileen ;
Dickson, Dennis W. ;
Lewis, Jada .
AMERICAN JOURNAL OF PATHOLOGY, 2010, 177 (01) :311-324
[4]   Involvement of progranulin in the enhancement of hippocampal neurogenesis by voluntary exercise [J].
Asakura, Rei ;
Matsuwaki, Takashi ;
Shim, Joo-Hyun ;
Yamanouchi, Keitaro ;
Nishihara, Masugi .
NEUROREPORT, 2011, 22 (17) :881-886
[5]   Mutations in progranulin cause tau-negative frontotemporal dementia linked to chromosome 17 [J].
Baker, Matt ;
Mackenzie, Ian R. ;
Pickering-Brown, Stuart M. ;
Gass, Jennifer ;
Rademakers, Rosa ;
Lindholm, Caroline ;
Snowden, Julie ;
Adamson, Jennifer ;
Sadovnick, A. Dessa ;
Rollinson, Sara ;
Cannon, Ashley ;
Dwosh, Emily ;
Neary, David ;
Melquist, Stacey ;
Richardson, Anna ;
Dickson, Dennis ;
Berger, Zdenek ;
Eriksen, Jason ;
Robinson, Todd ;
Zehr, Cynthia ;
Dickey, Chad A. ;
Crook, Richard ;
McGowan, Eileen ;
Mann, David ;
Boeve, Bradley ;
Feldman, Howard ;
Hutton, Mike .
NATURE, 2006, 442 (7105) :916-919
[6]   The granulin gene family: from cancer to dementia [J].
Bateman, Andrew ;
Bennett, Hugh P. J. .
BIOESSAYS, 2009, 31 (11) :1245-1254
[7]   Exercise primes a molecular memory for brain-derived neurotrophic factor protein induction in the rat hippocampus [J].
Berchtold, NC ;
Chinn, G ;
Chou, M ;
Kesslak, JP ;
Cotman, CW .
NEUROSCIENCE, 2005, 133 (03) :853-861
[8]   Total daily physical activity and the risk of AD and cognitive decline in older adults [J].
Buchman, A. S. ;
Boyle, P. A. ;
Yu, L. ;
Shah, R. C. ;
Wilson, R. S. ;
Bennett, D. A. .
NEUROLOGY, 2012, 78 (17) :1323-1329
[9]   Suberoylanilide Hydroxamic Acid (Vorinostat) Up-regulates Progranulin Transcription RATIONAL THERAPEUTIC APPROACH TO FRONTOTEMPORAL DEMENTIA [J].
Cenik, Basar ;
Sephton, Chantelle F. ;
Dewey, Colleen M. ;
Xian, Xunde ;
Wei, Shuguang ;
Yu, Kimberley ;
Niu, Wenze ;
Coppola, Giovanni ;
Coughlin, Sarah E. ;
Lee, Suzee E. ;
Dries, Daniel R. ;
Almeida, Sandra ;
Geschwind, Daniel H. ;
Gao, Fen-Biao ;
Miller, Bruce L. ;
Farese, Robert V., Jr. ;
Posner, Bruce A. ;
Yu, Gang ;
Herz, Joachim .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2011, 286 (18) :16101-16108
[10]   Null mutations in progranulin cause ubiquitin-positive frontotemporal dementia linked to chromosome 17q21 [J].
Cruts, Marc ;
Gijselinck, Ilse ;
van der Zee, Julie ;
Engelborghs, Sebastiaan ;
Wils, Hans ;
Pirici, Daniel ;
Rademakers, Rosa ;
Vandenberghe, Rik ;
Dermaut, Bart ;
Martin, Jean-Jacques ;
van Duijn, Cornelia ;
Peeters, Karin ;
Sciot, Raf ;
Santens, Patrick ;
De Pooter, Tim ;
Mattheijssens, Maria ;
Van den Broeck, Marleen ;
Cuijt, Ivy ;
Vennekens, Krist'l ;
De Deyn, Peter P. ;
Kumar-Singh, Samir ;
Van Broeckhoven, Christine .
NATURE, 2006, 442 (7105) :920-924