C9orf72 poly(GR) aggregation induces TDP-43 proteinopathy.
C9orf72 poly(GR) aggregation induces TDP-43 proteinopathy.
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DOI:
10.1126/scitranslmed.abb3774
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发表时间:
2020-09-02
影响因子:
17.1
通讯作者:
Petrucelli L
中科院分区:
文献类型:
--
作者:
Cook CN;Wu Y;Odeh HM;Gendron TF;Jansen-West K;Del Rosso G;Yue M;Jiang P;Gomes E;Tong J;Daughrity LM;Avendano NM;Castanedes-Casey M;Shao W;Oskarsson B;Tomassy GS;McCampbell A;Rigo F;Dickson DW;Shorter J;Zhang YJ;Petrucelli L
TAR DNA-binding protein 43 (TDP-43) inclusions are a pathological hallmark of frontotemporal dementia (FTD) and amyotrophic lateral sclerosis (ALS), including cases caused by G4C2 repeat expansions in the C9orf72 gene (c9FTD/ALS). Providing mechanistic insight into the link between C9orf72 mutations and TDP-43 pathology, we demonstrated that a glycine-arginine repeat protein [poly(GR)] translated from expanded G4C2 repeats was sufficient to promote aggregation of endogenous TDP-43. In particular, toxic poly(GR) proteins mediated sequestration of full-length TDP-43 in an RNA-independent manner to induce cytoplasmic TDP-43 inclusion formation. Moreover, in GFP-(GR)200 mice, poly(GR) caused the mislocalization of nucleocytoplasmic transport factors and nuclear pore complex proteins. These mislocalization events resulted in the aberrant accumulation of endogenous TDP-43 in the cytoplasm where it co-aggregated with poly(GR). Last, we demonstrated that treating G4C2 repeat–expressing mice with repeat-targeting antisense oligonucleotides lowered poly(GR) burden, which was accompanied by reduced TDP-43 pathology and neurodegeneration, including lowering of plasma neurofilament light (NFL) concentration. These results contribute to clarification of the mechanism by which poly(GR) drives TDP-43 proteinopathy, confirm that G4C2-targeted therapeutics reduce TDP-43 pathology in vivo, and demonstrate that alterations in plasma NFL provide insight into the therapeutic efficacy of disease-modifying treatments.
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影响因子:
16.2
作者:
Ash PE;Bieniek KF;Gendron TF;Caulfield T;Lin WL;Dejesus-Hernandez M;van Blitterswijk MM;Jansen-West K;Paul JW 3rd;Rademakers R;Boylan KB;Dickson DW;Petrucelli L
通讯作者:
Petrucelli L
影响因子:
4.8
作者:
Johnson, Brian S.;Snead, David;Gitler, Aaron D.
通讯作者:
Gitler, Aaron D.
影响因子:
16.6
作者:
Green KM;Glineburg MR;Kearse MG;Flores BN;Linsalata AE;Fedak SJ;Goldstrohm AC;Barmada SJ;Todd PK
通讯作者:
Todd PK
影响因子:
5.3
作者:
Meeter LHH;Gendron TF;Sias AC;Jiskoot LC;Russo SP;Donker Kaat L;Papma JM;Panman JL;van der Ende EL;Dopper EG;Franzen S;Graff C;Boxer AL;Rosen HJ;Sanchez-Valle R;Galimberti D;Pijnenburg YAL;Benussi L;Ghidoni R;Borroni B;Laforce R Jr;Del Campo M;Teunissen CE;van Minkelen R;Rojas JC;Coppola G;Geschwind DH;Rademakers R;Karydas AM;Öijerstedt L;Scarpini E;Binetti G;Padovani A;Cash DM;Dick KM;Bocchetta M;Miller BL;Rohrer JD;Petrucelli L;van Swieten JC;Lee SE
通讯作者:
Lee SE
DOI:
10.1126/science.aaa9344
发表时间:
2015-06-05
期刊:
Science (New York, N.Y.)
影响因子:
--
作者:
Chew J;Gendron TF;Prudencio M;Sasaguri H;Zhang YJ;Castanedes-Casey M;Lee CW;Jansen-West K;Kurti A;Murray ME;Bieniek KF;Bauer PO;Whitelaw EC;Rousseau L;Stankowski JN;Stetler C;Daughrity LM;Perkerson EA;Desaro P;Johnston A;Overstreet K;Edbauer D;Rademakers R;Boylan KB;Dickson DW;Fryer JD;Petrucelli L
通讯作者:
Petrucelli L