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Addendum

TDP-43—The key to understanding amyotrophic lateral sclerosis

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Article: e944443 | Received 28 Apr 2014, Accepted 17 Jun 2014, Published online: 30 Oct 2014

Keep up to date with the latest research on this topic with citation updates for this article.

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Neha Sami, Safikur Rahman, Vijay Kumar, Sobia Zaidi, Asimul Islam, Sher Ali, Faizan Ahmad & Md. Imtaiyaz Hassan. (2017) Protein aggregation, misfolding and consequential human neurodegenerative diseases. International Journal of Neuroscience 127:11, pages 1047-1057.
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Articles from other publishers (12)

Zhao Zhong Chong, Daniel L. Menkes & Nizar Souayah. (2023) Pathogenesis underlying hexanucleotide repeat expansions in C9orf72 gene in amyotrophic lateral sclerosis . Reviews in the Neurosciences 0:0.
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Jiangxia Ni, Yongfei Ren, Tonghui Su, Jia Zhou, Chaoying Fu, Yi Lu, De’an Li, Jing Zhao, Yunxia Li, Yaoyang Zhang, Yanshan Fang, Nan Liu, Yang Geng & Yelin Chen. (2021) Loss of TDP-43 function underlies hippocampal and cortical synaptic deficits in TDP-43 proteinopathies. Molecular Psychiatry 28:2, pages 931-945.
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Yijun Pan, Yoshiteru Kagawa, Jiaqi Sun, Bradley J. Turner, Cheng Huang, Anup D. Shah, Ralf B. Schittenhelm & Joseph A. Nicolazzo. (2022) Altered Blood–Brain Barrier Dynamics in the C9orf72 Hexanucleotide Repeat Expansion Mouse Model of Amyotrophic Lateral Sclerosis. Pharmaceutics 14:12, pages 2803.
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Chunxing Yang, Tao Qiao, Jia Yu, Hongyan Wang, Yansu Guo, Johnny Salameh, Jake Metterville, Sepideh Parsi, Issa Yusuf, Robert H. Brown, Huaibin Cai & Zuoshang Xu. (2022) Low-level overexpression of wild type TDP-43 causes late-onset, progressive neurodegeneration and paralysis in mice. PLOS ONE 17:2, pages e0255710.
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Weilun Pang & Fenghua Hu. (2020) Cellular and physiological functions of C9ORF72 and implications for ALS/FTD. Journal of Neurochemistry 157:3, pages 334-350.
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Akhlaq A. Farooqui. 2021. Gut Microbiota in Neurologic and Visceral Diseases. Gut Microbiota in Neurologic and Visceral Diseases 87 100 .
Mara-Luciana Floare & Scott P. Allen. (2020) Why TDP-43? Why Not? Mechanisms of Metabolic Dysfunction in Amyotrophic Lateral Sclerosis. Neuroscience Insights 15, pages 263310552095730.
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Rudolf C Hergesheimer, Anna A. Chami, Denis Reis de Assis, Patrick Vourc’h, Christian R. Andres, Philippe Corcia, Débora Lanznaster & Hélène Blasco. (2019) The debated toxic role of aggregated TDP-43 in amyotrophic lateral sclerosis: a resolution in sight?. Brain 142:5, pages 1176-1194.
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Jacob R. Mann, Amanda M. Gleixner, Jocelyn C. Mauna, Edward Gomes, Michael R. DeChellis-Marks, Patrick G. Needham, Katie E. Copley, Bryan Hurtle, Bede Portz, Noah J. Pyles, Lin Guo, Christopher B. Calder, Zachary P. Wills, Udai B. Pandey, Julia K. Kofler, Jeffrey L. Brodsky, Amantha Thathiah, James Shorter & Christopher J. Donnelly. (2019) RNA Binding Antagonizes Neurotoxic Phase Transitions of TDP-43. Neuron 102:2, pages 321-338.e8.
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Gavin C. Pereira, Laura Sanchez, Paul M. Schaughency, Alejandro Rubio-Roldán, Jungbin A. Choi, Evarist Planet, Ranjan Batra, Priscilla Turelli, Didier Trono, Lyle W. Ostrow, John Ravits, Haig H. Kazazian, Sarah J. Wheelan, Sara R. Heras, Jens Mayer, Jose Luis García-Pérez & John L. Goodier. (2018) Properties of LINE-1 proteins and repeat element expression in the context of amyotrophic lateral sclerosis. Mobile DNA 9:1.
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Alex C. Koon & Ho Yin Edwin Chan. (2017) Drosophila melanogaster As a Model Organism to Study RNA Toxicity of Repeat Expansion-Associated Neurodegenerative and Neuromuscular Diseases. Frontiers in Cellular Neuroscience 11.
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Angèle Nalbandian, Arif A. Khan, Ruchi Srivastava, Katrina J. Llewellyn, Baichang Tan, Nora Shukr, Yasmin Fazli, Virginia E. Kimonis & Lbachir BenMohamed. (2016) Activation of the NLRP3 Inflammasome Is Associated with Valosin-Containing Protein Myopathy. Inflammation 40:1, pages 21-41.
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