山本, 雅
山本, 雅, 1947-
야마모토 다다시 1947-
Yamamoto, Tadashi, 1947-
야마모토다다시
VIAF ID: 109963790 (Personal)
Permalink: http://viaf.org/viaf/109963790
Preferred Forms
- 100 1 _ ‡a Yamamoto, Tadashi, ‡d 1947-
- 100 0 _ ‡a 山本 雅
- 100 1 _ ‡a 山本, 雅
- 100 1 _ ‡a 山本, 雅, ‡d 1947-
- 100 1 _ ‡a 야마모토 다다시 ‡d 1947-
- 100 0 _ ‡a 야마모토다다시
4xx's: Alternate Name Forms (26)
Works
Title | Sources |
---|---|
Activation of Fyn tyrosine kinase in the mouse dorsal hippocampus is essential for contextual fear conditioning. | |
Bunshi seibutsugaku irasutoreiteddo | |
Bunshi seibutsugakuteki apurōchi ni yoru gan kenkyū purotokōru | |
The CCR4-NOT complex maintains liver homeostasis through mRNA deadenylation | |
The CCR4-NOT deadenylase complex safeguards thymic positive selection by down-regulating aberrant pro-apoptotic gene expression | |
CNOT1 regulates circadian behaviour through <i>Per2</i> mRNA decay in a deadenylation-dependent manner | |
Distinct expression patterns of the subunits of the CCR4-NOT deadenylase complex during neural development. | |
DNA結合能を微小管モーター蛋白質(Kid)の細胞分裂及び増殖における機能 | |
Dopamine-induced tyrosine phosphorylation of NR2B (Tyr1472) is essential for ERK1/2 activation and processing of novel taste information | |
Emerging roles of ARHGAP33 in intracellular trafficking of TrkB and pathophysiology of neuropsychiatric disorders. | |
English listening for international scientific conferences | |
Fluid flow-induced left-right asymmetric decay of Dand5 mRNA in the mouse embryo requires a Bicc1-Ccr4 RNA degradation complex | |
Gan idenshi kenkyū | |
Gan to idenshi : Kinō kara shindan chiryō made | |
Genetic and chemical inhibition of IRF5 suppresses pre-existing mouse lupus-like disease | |
Growth factors. | |
Hatsugan to sono yobō | |
Idenshi kōgaku no kiso gijutsu | |
Involvement of Brain-Enriched Guanylate Kinase-Associated Protein (BEGAIN) in Chronic Pain after Peripheral Nerve Injury. | |
Involvement of spinal phosphorylation cascade of Tyr1472-NR2B, Thr286-CaMKII, and Ser831-GluR1 in neuropathic pain | |
Kihon kara sentan madeno idenshi kōgaku ga wakaru | |
Kokusai gakkai no tameno kagaku eigo zettai risuningu : Raibu eigo to kihon furezu de eigomimi o tsukuru. | |
LMTK3 deficiency causes pronounced locomotor hyperactivity and impairs endocytic trafficking | |
Loss of β-cell identity and diabetic phenotype in mice caused by disruption of CNOT3-dependent mRNA deadenylation | |
Neurotensin type 2 receptor is involved in fear memory in mice | |
NMDAR2B tyrosine phosphorylation regulates anxiety-like behavior and CRF expression in the amygdala | |
NR2B phosphorylation at tyrosine 1472 contributes to brain injury in a rodent model of neonatal hypoxia-ischemia | |
NR2B tyrosine phosphorylation modulates fear learning as well as amygdaloid synaptic plasticity | |
p250GAP, a novel brain-enriched GTPase-activating protein for Rho family GTPases, is involved in the N-methyl-d-aspartate receptor signaling | |
The p250GAP gene is associated with risk for schizophrenia and schizotypal personality traits | |
Phosphorylation of NMDA receptor GluN2B subunit at Tyr1472 is important for trigeminal processing of itch. | |
Psychiatric-disorder-related behavioral phenotypes and cortical hyperactivity in a mouse model of 3q29 deletion syndrome | |
Saibō no tanjō to shi | |
Saibō zōshoku no seigyo | |
Saibōnai shigunaru dentatsu | |
Saitokain jikkenhō | |
Shin idenshi kōgaku handobukku | |
Shin saibō kōgaku jikken purotokōru | |
Zōshoku inshi | |
(그림으로 보는) 최신 분자생물학 | |
(키워드로 이해하는) 세포신호 전달 일러스트 맵 | |
がんと遺伝子 : 機能から診断・治療まで | |
がん遺伝子とがん抑制遺伝子 | |
がん遺伝子研究 : 最近の進步 | |
わかる遺伝子工学 | |
キーワードで理解するシグナル伝達イラストマップ | |
サイトカイン実験法 : 定量・機能解析の基本からシグナル伝達研究まで | |
シグナル伝達 : 集中マスター | |
シグナル伝達キーワード事典 : イラストで徹底理解する | |
シグナル伝達研究2005-'06 : 生命現象や疾患を支配する分子メカニズムと新しい研究法 : 現在と未来 | |
チロシンリン酸化反応に基づく神経機能の解析 | |
分子生物学イラストレイテッド | |
分子生物学的アプローチによる癌研究プロトコール | |
発がんとその予防 | |
国際学会のための科学英語絶対リスニング : ライブ英語と基本フレーズで英語耳をつくる! | |
基本から先端までの遺伝子工学がわかる | |
実験医学 | |
新細胞工学実験プロトコール | |
新遺伝子工学ハンドブック | |
癌のシグナル伝達がわかる : 癌研究の基礎から分子標的治療まで | |
癌遺伝子・癌抑制遺伝子 | |
細胞の誕生と死 | |
細胞内シグナル伝達 | |
細胞増殖の制御 | |
遺伝子工学の基礎技術 | |
遺伝子工学集中マスター : 基本からゲノム医療までわかる |