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Frontiers in Neuroscience|July 9, 2021
Small, Seeding-Competent Huntingtin Fibrils Are Prominent Aggregate Species in Brains of zQ175 Huntington's Disease Knock-in MiceFranziska Schindler, Nicole Praedel, Nancy Neuendorf, et al.
Nature Reviews. Disease Primers|May 19, 2016
Huntington diseaseGillian P Bates, Ray Dorsey, James F Gusella, et al.
Molecular & Cellular Proteomics : MCP|December 2, 2008
A large number of protein expression changes occur early in life and precede phenotype onset in a mouse model for huntington diseaseClaus Zabel, Lei Mao, Ben Woodman, et al.
Somatic Cell and Molecular Genetics|July 14, 1998
Exon trapping and sequence-based methods of gene finding in transcript mapping of human 4p16.3I Pribill, G T Barnes, J Chen, et al.
Neurobiology of Disease|December 3, 2014
Characterisation of immune cell function in fragment and full-length Huntington's disease mouse modelsUlrike Träger, Ralph Andre, Anna Magnusson-Lind, et al.
Acta Neuropathologica|April 20, 2020
MEF2 impairment underlies skeletal muscle atrophy in polyglutamine diseaseSamir R Nath, Matthew L Lieberman, Zhigang Yu, et al.
Journal of Proteome Research|June 8, 2007
Proteomic profiling of plasma in Huntington's disease reveals neuroinflammatory activation and biomarker candidatesAnnette Dalrymple, Edward J Wild, Richard Joubert, et al.
Plos Genetics|March 10, 2015
HDAC4-myogenin axis as an important marker of HD-related skeletal muscle atrophyMichal Mielcarek, Marta Toczek, Cleo J L M Smeets, et al.
Neurobiology of Disease|August 23, 2005
Evaluation of the benzothiazole aggregation inhibitors riluzole and PGL-135 as therapeutics for Huntington's diseaseEmma Hockly, Jamie Tse, Amy L Barker, et al.
The Journal of Clinical Investigation|September 22, 2012
Mutant huntingtin fragmentation in immune cells tracks Huntington's disease progressionAndreas Weiss, Ulrike Träger, Edward J Wild, et al.
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