Rakez Kayed

Neurology University of Texas Medical Branch, Galveston, TX 
"Rakez Kayed"
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Montalbano M, McAllen S, Puangmalai N, et al. (2020) RNA-binding proteins Musashi and tau soluble aggregates initiate nuclear dysfunction. Nature Communications. 11: 4305
Puangmalai N, Bhatt N, Montalbano M, et al. (2020) Internalization mechanisms of brain-derived tau oligomers from patients with Alzheimer's disease, progressive supranuclear palsy and dementia with Lewy bodies. Cell Death & Disease. 11: 314
Sengupta U, Puangmalai N, Bhatt N, et al. (2020) Polymorphic α-Synuclein Strains Modified by Dopamine and Docosahexaenoic Acid Interact Differentially with Tau Protein. Molecular Neurobiology
Derry PJ, Hegde ML, Jackson GR, et al. (2019) Revisiting the intersection of amyloid, pathologically modified tau and iron in Alzheimer's disease from a ferroptosis perspective. Progress in Neurobiology. 101716
Montalbano M, McAllen S, Sengupta U, et al. (2019) Tau oligomers mediate aggregation of RNA-binding proteins Musashi1 and Musashi2 inducing Lamin alteration. Aging Cell. e13035
Sengupta U, Montalbano M, McAllen S, et al. (2018) Formation of Toxic Oligomeric Assemblies of RNA-binding Protein: Musashi in Alzheimer's disease. Acta Neuropathologica Communications. 6: 113
Ha Y, Liu W, Liu H, et al. (2018) AAV2-mediated GRP78 Transfer Alleviates Retinal Neuronal Injury by Downregulating ER Stress and Tau Oligomer Formation. Investigative Ophthalmology & Visual Science. 59: 4670-4682
Sengupta U, Kayed R. (2018) Amyloid oligomer interactions and polymorphisms: disease-relevant distinct assembly of α-synuclein and tau. Neuropsychopharmacology : Official Publication of the American College of Neuropsychopharmacology
Ghag G, Bhatt N, Cantu DV, et al. (2018) Soluble tau aggregates, not large fibrils, are the toxic species that display seeding and cross-seeding behavior. Protein Science : a Publication of the Protein Society
Sengupta U, Carretero-Murillo M, Kayed R. (2018) Preparation and Characterization of Tau Oligomer Strains. Methods in Molecular Biology (Clifton, N.J.). 1779: 113-146
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