C9orf72 FTLD/ALS-associated Gly-Ala dipeptide repeat proteins cause neuronal toxicity and Unc119 sequestration

被引:0
作者
Stephanie May
Daniel Hornburg
Martin H. Schludi
Thomas Arzberger
Kristin Rentzsch
Benjamin M. Schwenk
Friedrich A. Grässer
Kohji Mori
Elisabeth Kremmer
Julia Banzhaf-Strathmann
Matthias Mann
Felix Meissner
Dieter Edbauer
机构
[1] German Center for Neurodegenerative Diseases (DZNE),Department of Psychiatry and Psychotherapy
[2] Max Planck Institute of Biochemistry,Institute of Virology
[3] Center for Neuropathology and Prion Research,Adolf Butenandt Institute, Biochemistry
[4] Ludwig-Maximilians-University Munich,Institute of Molecular Immunology
[5] Ludwig-Maximilians University Munich,undefined
[6] Saarland University Medical School,undefined
[7] Ludwig-Maximilians University Munich,undefined
[8] Helmholtz Zentrum München,undefined
[9] German Research Center for Environmental Health (GmbH),undefined
[10] Munich Cluster of Systems Neurology (SyNergy),undefined
来源
Acta Neuropathologica | 2014年 / 128卷
关键词
Neurodegeneration; C9orf72; FTLD; ALS; Unc119; Proteomics;
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学科分类号
摘要
Hexanucleotide repeat expansion in C9orf72 is the most common pathogenic mutation in patients with amyotrophic lateral sclerosis (ALS) and frontotemporal lobar degeneration (FTLD). Despite the lack of an ATG start codon, the repeat expansion is translated in all reading frames into dipeptide repeat (DPR) proteins, which form insoluble, ubiquitinated, p62-positive aggregates that are most abundant in the cerebral cortex and cerebellum. To specifically analyze DPR toxicity and aggregation, we expressed DPR proteins from synthetic genes containing a start codon but lacking extensive GGGGCC repeats. Poly-Gly-Ala (GA) formed p62-positive cytoplasmic aggregates, inhibited dendritic arborization and induced apoptosis in primary neurons. Quantitative mass spectrometry analysis to identify poly-GA co-aggregating proteins revealed a significant enrichment of proteins of the ubiquitin–proteasome system. Among the other interacting proteins, we identified the transport factor Unc119, which has been previously linked to neuromuscular and axonal function, as a poly-GA co-aggregating protein. Strikingly, the levels of soluble Unc119 are strongly reduced upon poly-GA expression in neurons, suggesting a loss of function mechanism. Similar to poly-GA expression, Unc119 knockdown inhibits dendritic branching and causes neurotoxicity. Unc119 overexpression partially rescues poly-GA toxicity suggesting that poly-GA expression causes Unc119 loss of function. In C9orf72 patients, Unc119 is detectable in 9.5 % of GA inclusions in the frontal cortex, but only in 1.6 % of GA inclusions in the cerebellum, an area largely spared of neurodegeneration. A fraction of neurons with Unc119 inclusions shows loss of cytosolic staining. Poly-GA-induced Unc119 loss of function may thereby contribute to selective vulnerability of neurons with DPR protein inclusions in the pathogenesis of C9orf72 FTLD/ALS.
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页码:485 / 503
页数:18
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[1]  
Al-Sarraj S(2011)p62 positive, TDP-43 negative, neuronal cytoplasmic and intranuclear inclusions in the cerebellum and hippocampus define the pathology of C9orf72-linked FTLD and MND/ALS Acta Neuropathol 122 691-702
[2]  
King A(2013)Modeling key pathological features of frontotemporal dementia with C9ORF72 repeat expansion in iPSC-derived human neurons Acta Neuropathol 126 385-399
[3]  
Troakes C(2013)Next-generation proteomics: towards an integrative view of proteome dynamics Nat Rev Genet 14 35-48
[4]  
Smith B(2013)Unconventional translation of C9ORF72 GGGGCC expansion generates insoluble polypeptides specific to c9FTD/ALS Neuron 7 549-32
[5]  
Maekawa S(2013)Large C9orf72 hexanucleotide repeat expansions are seen in multiple neurodegenerative syndromes and are more frequent than expected in the UK population Am J Hum Genet 75 26-1372
[6]  
Bodi I(2011)The quantitative proteome of a human cell line Mol Syst Biol 26 1367-1805
[7]  
Rogelj B(2012)Frontotemporal lobar degeneration with TDP-43 proteinopathy and chromosome 9p repeat expansion in C9ORF72: clinicopathologic correlation Neuropathology 13 S12-256
[8]  
Al-Chalabi A(2012)Uncoordinated (UNC)119: coordinating the trafficking of myristoylated proteins Vision Res 10 1794-849
[9]  
Hortobagyi T(2008)MaxQuant enables high peptide identification rates, individualized p.p.b.-range mass accuracies and proteome-wide protein quantification Nat Biotechnol 72 245-428
[10]  
Shaw CE(2012)1D and 2D annotation enrichment: a statistical method integrating quantitative proteomics with complementary high-throughput data BMC Bioinform 107 841-1203