Takeshi Iwatsubo, MD

Neuropathology and Neuroscience The University of Tokyo 
"Takeshi Iwatsubo"



Mean distance: 18.85 (cluster 31)
Cross-listing: Alzheimer's Tree - Neuropathology Tree

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Park S, Park SK, Watanabe N, et al. (2019) Calcium-responsive transactivator (CREST) toxicity is rescued by loss of PBP1/ATXN2 function in a novel yeast proteinopathy model and in transgenic flies. Plos Genetics. 15: e1008308
Eto M, Hashimoto T, Shimizu T, et al. (2019) Characterization of the unique In Vitro effects of unsaturated fatty acids on the formation of amyloid β fibrils. Plos One. 14: e0219465
Wakabayashi T, Yamaguchi K, Matsui K, et al. (2019) Differential effects of diet- and genetically-induced brain insulin resistance on amyloid pathology in a mouse model of Alzheimer's disease. Molecular Neurodegeneration. 14: 15
Gonçalves TJM, Boutillon F, Lefebvre S, et al. (2019) Collagen XXV promotes myoblast fusion during myogenic differentiation and muscle formation. Scientific Reports. 9: 5878
Bannai T, Mano T, Chen X, et al. (2019) Chronic cerebral hypoperfusion shifts the equilibrium of amyloid β oligomers to aggregation-prone species with higher molecular weight. Scientific Reports. 9: 2827
Mann DMA, Davidson YS, Robinson AC, et al. (2018) Patterns and severity of vascular amyloid in Alzheimer's disease associated with duplications and missense mutations in APP gene, Down syndrome and sporadic Alzheimer's disease. Acta Neuropathologica
Hori Y, Hashimoto T, Nomoto H, et al. (2018) Role of apolipoprotein E in β-amyloidogenesis: Isoform-specific effects on protofibril to fibril conversion of Aβ and brain Aβ deposition . The Journal of Biological Chemistry. 293: 7267
Matsumoto T, Matsukawa K, Watanabe N, et al. (2018) Self-assembly of FUS through its low-complexity domain contributes to neurodegeneration. Human Molecular Genetics
Kidana K, Tatebe T, Ito K, et al. (2018) Loss of kallikrein-related peptidase 7 exacerbates amyloid pathology in Alzheimer's disease model mice. Embo Molecular Medicine
Mano T, Nagata K, Nonaka T, et al. (2017) Neuron-specific methylome analysis reveals epigenetic regulation and tau-related dysfunction of BRCA1 in Alzheimer's disease. Proceedings of the National Academy of Sciences of the United States of America
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