Progranulin: normal function and role in neurodegeneration

被引:113
作者
Eriksen, Jason L. [2 ]
Mackenzie, Ian R. A. [1 ]
机构
[1] Vancouver Gen Hosp, Dept Pathol, Vancouver, BC V5Z 1M9, Canada
[2] Mayo Clin Jacksonville, Dept Neurosci, Jacksonville, FL 32224 USA
关键词
frontotemporal dementia; frontotemporal lobar degeneration; FTLD-U; progranulin; TDP-43;
D O I
10.1111/j.1471-4159.2007.04968.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Progranulin (PGRN) is a multifunctional protein that has attracted significant attention in the neuroscience community following the recent discovery of PGRN mutations in some cases of frontotemporal dementia. Most of the pathogenic mutations result in null alleles, and it is thought that frontotemporal dementia in these families results from PGRN haploinsufficiency. The neuropathology associated with PGRN mutations is characterized by the presence of tau-negative, ubiquitin-immunoreactive neuronal inclusions (frontotemporal lobar degeneration with ubiquitinated inclusions) that are also positive for the transactivation response DNA binding protein with M-r 43 kD. The clinical phenotype includes behavioral abnormalities, language disorders and parkinsonism but not motor neuron disease. There is significant clinical variation between families with different PGRN mutations and among members of individual families. The normal function of PGRN is complex, with the full-length form of the protein having trophic and anti-inflammatory activity, whereas proteolytic cleavage generates granulin peptides that promote inflammatory activity. In the periphery, PGRN functions in wound healing responses and modulates inflammatory events. In the CNS, PGRN is expressed by neurons and microglia; consequently, reduced levels of PGRN could affect both neuronal survival and CNS inflammatory processes. In this review, we discuss current knowledge of the molecular genetics, neuropathology, clinical phenotype and functional aspects of PGRN in the context of neurodegenerative disease.
引用
收藏
页码:287 / 297
页数:11
相关论文
共 94 条
[71]   Tau negative frontal lobe dementia at 17q21: significant finemapping of the candidate region to a 4.8 cM interval [J].
Rademakers, R ;
Cruts, M ;
Dermaut, B ;
Sleegers, K ;
Rosso, SM ;
Van den Broeck, M ;
Backhovens, H ;
van Swieten, J ;
van Duijn, CM ;
Van Broeckhoven, C .
MOLECULAR PSYCHIATRY, 2002, 7 (10) :1064-1074
[72]   Frontotemporal dementia in The Netherlands: patient characteristics and prevalence estimates from a population-based study [J].
Rosso, SM ;
Kaat, LD ;
Baks, T ;
Joosse, M ;
de Koning, I ;
Pijnenburg, Y ;
de Jong, D ;
Dooijes, D ;
Kamphorst, W ;
Ravid, R ;
Niermeijer, MF ;
Verheij, F ;
Kremer, HP ;
Scheltens, P ;
van Duijn, CM ;
Heutink, P ;
van Swieten, JC .
BRAIN, 2003, 126 :2016-2022
[73]   Familial frontotemporal dementia with ubiquitin-positive inclusions is linked to chromosome 17q2l-22 [J].
Rosso, SM ;
Kamphorst, W ;
de Graaf, B ;
Willemsen, R ;
Ravid, R ;
Niermeijer, MF ;
Spillantini, MG ;
Heutink, P ;
van Swieten, JC .
BRAIN, 2001, 124 :1948-1957
[74]   Pathological heterogeneity of frontotemporal lobar degeneration with ubiquitin-positive inclusions delineated by ubiquitin immunohistochemistry and novel monoclonal antibodies [J].
Sampathu, Deepak M. ;
Neumann, Manuela ;
Kwong, Linda K. ;
Chou, Thomas T. ;
Micsenyi, Matthew ;
Truax, Adam ;
Bruce, Jennifer ;
Grossman, Murray ;
Trojanowski, John Q. ;
Lee, Virginia M. -Y. .
AMERICAN JOURNAL OF PATHOLOGY, 2006, 169 (04) :1343-1352
[75]   Progranulin mutations and amyotrophic lateral sclerosis or amyotrophic lateral sclerosis-frontotemporal dementia phenotypes [J].
Schymick, J. C. ;
Yang, Y. ;
Andersen, P. M. ;
Vonsattel, J. P. ;
Greenway, M. ;
Momeni, P. ;
Elder, J. ;
Chio, A. ;
Restagno, G. ;
Robberecht, W. ;
Dahlberg, C. ;
Mukherjee, O. ;
Goate, A. ;
Graff-Radford, N. ;
Caselli, R. J. ;
Hutton, M. ;
Gass, J. ;
Cannon, A. ;
Rademakers, R. ;
Singleton, A. B. ;
Hardiman, O. ;
Rothstein, J. ;
Hardy, J. ;
Traynor, B. J. .
JOURNAL OF NEUROLOGY NEUROSURGERY AND PSYCHIATRY, 2007, 78 (07) :754-756
[76]   Mutations in the endosomal ESCRTIII-complex subunit CHMP2B in frontotemporal dementia [J].
Skibinski, G ;
Parkinson, NJ ;
Brown, JM ;
Chakrabarti, L ;
Lloyd, SL ;
Hummerich, H ;
Nielsen, JE ;
Hodges, JR ;
Spillantini, MG ;
Thusgaard, T ;
Brandner, S ;
Brun, A ;
Rossor, MN ;
Gade, A ;
Johannsen, P ;
Sorensen, SA ;
Gydesen, S ;
Fisher, EMC ;
Collinge, J .
NATURE GENETICS, 2005, 37 (08) :806-808
[77]  
Sleegers K, 2007, NEUROLOGY, V68, pA202
[78]   Progranulin gene mutations associated with frontotemporal dementia and progressive non-fluent aphasia [J].
Snowden, J. S. ;
Pickering-Brown, S. M. ;
Mackenzie, I. R. ;
Richardson, A. M. T. ;
Varma, A. ;
Neary, D. ;
Mann, D. M. A. .
BRAIN, 2006, 129 :3091-3102
[79]   Mutation in the tau gene in familial multiple system tauopathy with presenile dementia [J].
Spillantini, MG ;
Murrell, JR ;
Goedert, M ;
Farlow, MR ;
Klug, A ;
Ghetti, B .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (13) :7737-7741
[80]   Clinicopathologic features of frontotemporal dementia with Progranulin sequence variation [J].
Spina, S. ;
Murrell, J. R. ;
Huey, E. D. ;
Wassermann, E. M. ;
Pietrini, P. ;
Baraibar, M. A. ;
Barbeito, A. G. ;
Troncoso, J. C. ;
Vidal, R. ;
Ghetti, B. ;
Grafman, J. .
NEUROLOGY, 2007, 68 (11) :820-827