Yasuo Ihara, MD

Affiliations: 
Neuropathology University of Tokyo, Bunkyō-ku, Tōkyō-to, Japan 
Area:
http://www.researchprofiles.collexis.com/jad/expert.asp?u_id=59
Website:
http://books.google.com/books?id=QPqCvP0wFjUC&pg=PA209&lpg=PA209&dq=Yasuo+Ihara+tokyo&source=bl&ots=pitZ1PpZ6j&sig=DXK34KdhupZLLkBcCLSrRVGltd8&hl=en&ei=5XNCTfX4HcP78Aai0cyLAg&sa=X&oi=
Google:
"Yasuo Ihara"
Bio:

http://www.biomedexperts.com/Profile.bme/606970/Yasuo_Ihara

Mean distance: 17 (cluster 31)
 
SNBCP
Cross-listing: Alzheimer's Tree - Neuropathology Tree

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Publications

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Miyashita A, Hatsuta H, Kikuchi M, et al. (2014) Genes associated with the progression of neurofibrillary tangles in Alzheimer's disease. Translational Psychiatry. 4: e396
Saito Y, Miyasaka T, Hatsuta H, et al. (2014) Immunostaining of oxidized DJ-1 in human and mouse brains. Journal of Neuropathology and Experimental Neurology. 73: 714-28
Xie C, Miyasaka T, Yoshimura S, et al. (2014) The homologous carboxyl-terminal domains of microtubule-associated protein 2 and TAU induce neuronal dysfunction and have differential fates in the evolution of neurofibrillary tangles. Plos One. 9: e89796
Matsumura N, Takami M, Okochi M, et al. (2014) γ-Secretase associated with lipid rafts: multiple interactive pathways in the stepwise processing of β-carboxyl-terminal fragment. The Journal of Biological Chemistry. 289: 5109-21
Funamoto S, Sasaki T, Ishihara S, et al. (2013) Substrate ectodomain is critical for substrate preference and inhibition of γ-secretase. Nature Communications. 4: 2529
Kang MS, Baek SH, Chun YS, et al. (2013) Modulation of lipid kinase PI4KIIα activity and lipid raft association of presenilin 1 underlies γ-secretase inhibition by ginsenoside (20S)-Rg3. The Journal of Biological Chemistry. 288: 20868-82
Miyashita A, Koike A, Jun G, et al. (2013) SORL1 is genetically associated with late-onset Alzheimer's disease in Japanese, Koreans and Caucasians. Plos One. 8: e58618
Wen Y, Miyashita A, Kitamura N, et al. (2013) SORL1 is genetically associated with neuropathologically characterized late-onset Alzheimer's disease. Journal of Alzheimer's Disease : Jad. 35: 387-94
Okochi M, Tagami S, Yanagida K, et al. (2013) γ-secretase modulators and presenilin 1 mutants act differently on presenilin/γ-secretase function to cleave Aβ42 and Aβ43. Cell Reports. 3: 42-51
Kakuda N, Akazawa K, Hatsuta H, et al. (2013) Suspected limited efficacy of γ-secretase modulators. Neurobiology of Aging. 34: 1101-4
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