2010
■AMPA受容体の多型が排卵率と相関する (PLoS One) 2010.11.1 |
Sugimoto M, Sasaki S, Watanabe T, Nishimura S, Ideta A, Yamazaki M, Matsuda K, Yuzaki M, Sakimura K, Aoyagi Y, Sugimoto Y. Ionotropic glutamate receptor AMPA 1 is associated with ovulation rate. PLoS One. 2010 Nov3;5(11):e13817. http://www.plosone.org/article/info%3Adoi%2F10.1371%2Fjournal.pone.0013817 |
■Snapinはダイニンと結合しlate endosomeの輸送とlysosome/autophagosomeの成熟を制御する (Neuron; invited preview) 2010.9.29 |
Yuzaki M. Snapin snaps into the dynein complex for late endosome-lysosome trafficking and autophagy. Neuron 68,4-6, 2010. http://www.ncbi.nlm.nih.gov/pubmed/20920785 |
■Dravet症候群におけるSCN1A領域のプロモーター活性 (Human Mutat) 2010.8.11 |
Nakayama T, Ogiwara I, Ito K, Kaneda M, Mazaki E, Osaka H, Ohtani H, Inoue Y, Fujiwara T, Uematsu M, Haginoya K, Tsuchiya S, Yamakawa K. Deletions of SCN1A 5’ genomic region with promoter activity in Dravet syndrome. Hum Mutat. 31:820-829,2010. |
■安全性を考慮したiPS細胞による脊髄損傷への治療可能性 (PNAS) 2010.8.1 |
Tsuji O, Miura K, Okada Y, Fujiyoshi K, Mukaino M, Nagoshi N, Kitamura K, Kumagai G, Nishino M, Tomisato S, Higashi H, Nagai T, Katoh H, Kohda K, Matsuzaki Y, Yuzaki M, Ikeda E, Toyama Y, Nakamura M, Yamanaka S, Okano H. Therapeutic potential of appropriately evaluated safe-induced pluripotent stem cells for spinal cord injury. Proc Natl Acad Sci U S A. 2010 Jul 13;107(28):12704-9. http://www.ncbi.nlm.nih.gov/pubmed/20615974 学部学生である富里君が貢献した論文です。 |
■C1qファミリー分子によるシナプス形成と維持 (EJN特集号責任編集; Invited Review) 2010.7.12 |
Yuzaki, M. Synapse formation and maintenance by C1q family proteins: a new class of secreted synapse organizers. (In: Special Issue: Formation, Regulation & Plasticity of Glutamatergic Synapse). Eur J Neurosci 32:191-197, 2010. http://www.ncbi.nlm.nih.gov/pubmed/20646056 |
■孤児受容体と孤児リガンドはそれぞれのパートナーを見つけた:デルタ2受容体とCbln1 (Invited Review; Cerebellum) 2010.6.11 |
Matsuda K, Yuzaki M. Cbln1 and the Delta2 Glutamate Receptor-An Orphan Ligand and an Orphan Receptor Find Their Partners. Cerebellum, 11: 78-84, 2012. http://www.ncbi.nlm.nih.gov/pubmed/20535596 |
■デルタ2受容体はCbln1の受容体であり、シナプス前部と後部の成熟を制御する (Science) 2010.4.16 |
Matsuda K, Miura E, Miyazaki T, Kakegawa W, Emi K, Narumi S, Fukazawa Y, Ito-Ishida A, Kondo T, Shigemoto R, Watanabe M, Yuzaki M. Cbln1 is a ligand for an orphan glutamate receptor delta2, a bidirectional synapse organizer. Science 328:363-368, 2010. http://www.sciencemag.org/cgi/content/abstract/328/5976/363 |
■興奮性細胞死とオートファジーの関係 (Autophagy) 2010.3.31 |
Nishiyama, J., Yuzaki, M. Excitotoxicity and autophagy: lurcher may not be a model of “autophagic cell death.” Autophagy 6, 568-570, 2010. http://www.landesbioscience.com/journals/autophagy/article/11951/ |
■脳におけるC1QLファミリー分子の発現と生化学的解析 (Eur J Neurosci) 2010.3.1 |
Iijima T, Miura E, Watanabe M, Yuzaki M. Distinct expression of C1q-like family mRNAs in mouse brain and biochemical characterization of their encoded proteins. Eur J Neurosci 31:1606-1615, 2010. http://www3.interscience.wiley.com/journal/123389540/abstract |
■発達期におけるDISC1の前頭前野でのノックダウンによって、思春期後の行動異常とドーパミン系の異常がもたらされる (Neuron) 2010.2.25 |
Niwa M, Kamiya A, Murai R, Kubo K, Gruber AJ, Tomita K, Lu L, Tomisato S, Jaaro-Peled H, Seshadri S, Hiyama H, Huang B, Kohda K, Noda Y, O’Donnell P, Nakajima K, Sawa A, Nabeshima T. Knockdown of DISC1 by in utero gene transfer disturbs postnatal dopaminergic maturation in the frontal cortex and leads to adult behavioral deficits. Neuron 65:480-9, 2010. http://www.ncbi.nlm.nih.gov/pubmed/20188653 学部学生である富里君が貢献した論文です。 |
■ラーチャー変異による細胞死はオートファジーによる死ではない (J Neurosci) 2010.2.15 |
Nishiyama J, Matsuda K, Kakegawa W, Yamada N, Motohashi J, Mizushima N, Yuzaki M. Reevaluation of neurodegeneration in lurcher mice: constitutive ion fluxes cause cell death with, not by, autophagy. J Neurosci 30:2177-87, 2010. http://www.jneurosci.org/cgi/content/abstract/30/6/2177 |
■神経軸索におけるオートファゴゾームはダイニンによって活動依存性に逆行輸送される (Autophagy) 2010.1.14 |
Katsumata K, Nishiyama J, Inoue T, Mizushima N, Takeda J, Yuzaki M. Dynein- and activity-dependent retrograde transport of autophagosomes in neuronal axons. Autophagy 6:378-385, 2010. http://www.landesbioscience.com/journals/autophagy/article/11262/ |
■マウス網膜P2X2型プリン受容体のOFF経路特異的発現には視覚経験が必要ない (Neurosci Res) 2010.1.1 |
Kaneda M, Ito K, Shigematsu Y, Shimoda Y. The OFF-pathway dominance of P2X2-purinoceptors is formed without visual experience. Neurosci Res. 66: 86-91, 2010. |