
TDP-43 Hexamutant (W→S) Monomeren
Kwaliteit
ISO Gecertificeerd
Levering
24-48 uur
Technische Specificaties
TAR DNA-binding protein 43 (TDP-43) is a ubiquitously expressed RNA/DNA-binding protein that plays a pivotal role in RNA processing, including RNA splicing, mRNA turnover, and microRNA biogenesis. Its pathological mislocalization from the nucleus to the cytoplasm, accompanied by aggregation and post-translational modifications, is a hallmark of several neurodegenerative diseases such as amyotrophic lateral sclerosis (ALS), frontotemporal lobar degeneration (FTLD), and Alzheimer’s disease. These TDP-43 proteinopathies disrupt nucleocytoplasmic transport and mitochondrial function, contributing to neuronal dysfunction and death. Recent studies have also highlighted TDP-43’s involvement in DNA repair and chromatin remodeling, expanding its relevance in neurobiology beyond RNA processing. Notably, Pokrishevsky et al. (2024) demonstrated that when all six tryptophans are mutated to serines (trpless), this significantly reduces the protein’s ability to cross-seed SOD1 aggregation. Our TDP-43 hexamutant monomers has shown a reduced propensity to aggregate.
Human Recombinant TDP-43 (W68S, W113S, W172S, W334S, W385S, W412S) Mutant Monomers
TDP-43, TDP43, TARDBP, TAR DNA-binding protein 43, Transactive response DNA-binding protein 43, ALS10, TDP43_N domain-containing protein, TADBP_HUMAN, TADBP_MOUSE, TADBP_PONAB, TADBP_XENTR, TADBP_CHICK, TBPH, dmTDP43, dtar, dTBPH, dTDP, dTDP-43, tbph, TDPH, CG10327, Dmel_CG10327
12352202
Non-hazardous
Non-hazardous
23435
Q13148
Q13148
E. coli
No Tag
Recombinant
WB
Neuroscience | Neurodegeneration | ALS Disease | Alzheimer's Disease
Affinity Purified
Certified 95% pure using A260/A280 analysis and western blot analysis. Low endotoxin <5 EU/mL @ 1 mg/mL.
1 mg/mL
> 95% by A260/A280
Not tested on monomer products; trial aggregation show non-fibrillar aggregated structures.
30mM Tris pH 7.4, 100 mM NaCl
44.61 kDa
Not for use in humans. Not for use in diagnostics or therapeutics. For research use only.
Dry Ice. Shipping note: Product will be shipped separately from other products purchased in the same order.
-80ºC
Refer to the Neurodegenerative Protein Handling Instructions on our website, or the product datasheet for further information.
413 AA
Chhangani, D., & Rincon-Limas, D. E. (2022) . TDP-35, a truncated fragment of TDP-43, induces dose-dependent toxicity and apoptosis in flies. Neural regeneration research, 17 (11), 2441–2442. https://doi.org/10.4103/1673-5374.338997 Meneses, A., Koga, S., O'Leary, J., Dickson, D. W., Bu, G., & Zhao, N. (2021) . TDP-43 pathology in Alzheimer’s disease. Molecular Neurodegeneration, 16 (84) . https://doi.org/10.1186/s13024-021-00503-x Nilaver, B. I., & Urbanski, H. F. (2023) . Mechanisms underlying TDP-43 pathology and neurodegeneration: An updated mini-review. Frontiers in Aging Neuroscience, 15: 1142617. https://doi.org/10.3389/fnagi.2023.1142617 Pokrishevsky, E., DuVal, M. G., McAlary, L., Louadi, S., Pozzi, S., Roman, A., Plotkin, S. S., Dijkstra, A., Julien, J. P., Allison, W. T., & Cashman, N. R. (2024) . Tryptophan residues in TDP-43 and SOD1 modulate the cross-seeding and toxicity of SOD1. The Journal of biological chemistry, 300 (5), 107207. https://doi.org/10.1016/j.jbc.2024.107207
SEYIRVTEDENDEPIEIPSEDDGTVLLSTVTAQFPGACGLRYRNPVSQCMRGVRLVEGILHAPDAGSGNLVYVVNYPKDNKRKMDETDASSAVKVKRAVQKTSDLIVLGLPSKTTEQDLKEYFSTFGEVLMVQVKKDLKTGHSKGFGFVRFTEYETQVKVMSQRHMIDGRSCDCKLPNSKQSQDEPLRSRKVFVGRCTEDMTEDELREFFSQYGDVMDVFIPKPFRAFAFVTFADDQIAQSLCGEDLIIKGISVHISNAEPKHNSNRQLERSGRFGGNPGGFGNQGGFGNSRGGGAGLGNNQGSNMGGGMNFGAFSINPAMMAAAQAALQSSSGMMGMLASQQNQSGPSGNNQNQGNMQREPNQAFGSGNNSYSGSNSGAAIGSGSASNAGSGSGFNGGFGSSMDSKSSGSGM
Human
Beschrijving
Human Recombinant TDP-43 (W68S, W113S, W172S, W334S, W385S, W412S) Mutant Monomers
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