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研究者名一覧   1期生2期性|3期生|
斎藤通紀白根道子豊田 実東山繁樹廣瀬哲郎三木裕明村田茂穂
山下 潤

斎藤 通紀
Mitinori Saitou
1. 斎藤通紀
マウス初期発生と生殖細胞形成の分子プログラム。Mouse early development and a molecular programme for the specification of germ cell fate.
日本生化学会大会(第76回;横浜)
2. M. Saitou
Single Cell Analysis of a Molecular Program for the Specification of Germ Cell Fate in Mice.
Gordon Research Conference, Mammalian Gametogenesis & Embryogenesis(2004)
3. 大日向康秀、Bernhard Payer、Donal O’Carrol、Katia Ancelin、小野由紀子、佐野光枝、Sheila C.Barton、Alexander Tarakhovsky、M.Azim Surani、斎藤通紀
マウスにおける生殖細胞の決定機構。
幹細胞シンポジウム(第3回;淡路)
4. 斎藤通紀
マウス生殖細胞決定の分子プログラム。
京都大学大学院 生命科学研究科シンポジウム(第6回)
5. 斎藤通紀
マウス生殖細胞系列の決定機構。
国際高等研究所 課題研究「分化全能性?普遍性と特異性」研究会(2004年度 第2回)
6. M. Saitou
Single cell analysis of a molecular programme for the birth of germ cell lineage in mice.
Kobe University The 21st Century COE Program Symposium Signal Transduction in Gametogenesis and Fertilization
7. 大日向康秀、Bernhard Payer、Donal O’Carroll、小野由紀子、佐野光枝、AlexanderTarakhovsky、M. Azim Surani、斎藤通紀
マウス生殖細胞形成機構の単一細胞解析。
平成16年度 文部科学省 特定領域研究 生殖細胞の発生プロセス・再プログラム化とエピジェネティクス 公開シンポジウム
8. M. A. Surani, K. Ancelin, P. Hajkova, U. C. Lange, B. Payer, P. Western and M. Saitou
Mechanism of mouse germ cell specification: A genetic programme regulating epigenetic reprogramming.
Cold Spring harbor Symposia on Quantitative Biology, Vol. LXIX, 2004 Cold Spring Harbor Laboratory Press 0-87969-729-6/04
9. Y. Seki, K. Hayashi, K. Itoh, M. Mizugaki, M. Saitou and Y. Matsui
Extensive and orderly reprogramming of genome-wide chromatin modifications associated with specification and early development of germ cells in mice.
Devel. Biol, Vol. 278: 440-458, 2005
10. Y. Ohinata, B. Payer, D. O'Carroll, K. Ancelin, Y. Ono, M. Sano, S. C. Barton, T. Obukhanych, M. Nussenzweig, A. Tarakhovsky, M. Saitou & M. A. Surani
Blimp-1 is a critical determinant of the germ cell lineage in mice.
Nature, Vol. 436: 207-213, 2005
11. 斎藤通紀
マウス生殖細胞の運命決定。
Medical Science Digest, No.4: 10-12, 2005
12. M. Saitou
Germline recruitment: A genetic program for epigenetic reprogramming.
Japan-France-Pittsburgh Meeting of Stem Cells
13. 斎藤通紀
マウス生殖細胞系列の決定とゲノム再編成。
京都大学大学院 生命科学研究科シンポジウム(第7回)
14. 斎藤通紀
マウス生殖細胞系列の決定とゲノム再編成。
日本哺乳動物卵子学会(第45回;淡路) 特別講演
15. Schulzke, J. D., Gitter, A. H., Mankertz, J., Spiegel, S., Seidler, U., Amasheh, S., Saitou, M., Tsukita, S., and Fromm, M.
Epithelial transport and barrier function in occludin-deficient mice.
Biochim. Biophys. Acta Vol. 1669, 34-42, 2005
16. Seki, Y., Hayashi, K., Itoh, K., Mizugaki, M., Saitou, M., and Matsui, Y.
Extensive and orderly reprogramming of genome-wide chromatin modifications associated with specification and early development of germ cells in mice.
Dev. Biol. Vol. 278: 440-458, 2005
17. Western, P., Maldonado-Saldivia, J., van den Bergen, J., Hajkova, P., Saitou, M., Barton, S., and Surani, M. A.
Analysis of Esg1 expression in pluripotent cells and the germline reveals similarities with Oct4 and Sox2, and differences between human pluripotent cell lines.
Stem Cells Vol. 23, 1436-1442, 2005
18. *Saitou, M., Payer, B., O’Carroll, D., Ohinata, Y., and *Surani, M. A.
Blimp1 and the emergence of the germ line during development in the mouse.
Cell Cycle Vol. 4, 1736-1740, 2005
19. Payer, B., Chuva de Sousa Lopes, S. M., Barton, S. C., Lee, C., Saitou, M., and Surani, M. A.
Generation of stella-GFP transgenic mice, a novel tool to study germ cell development.
Genesis Vol. 44, 75-83, 2006
20. Kurimoto, K., Yabuta, Y., Ohinata, Y., Ono, Y., Uno, D. K., Yamada, R. G., Ueda, H. R., and Saitou, M.
An improved single-cell cDNA amplification method for efficient high-density oligonucleotide microarray analysis.
Nuc. Acids Res. Vol. 34, e42, 2006
21. Yabuta, Y., Kurimoto, K., Ohinata, Y., Seki, Y., and Saitou, M.
Gene expression dynamics during germline specification in mice identified by quantitative single-cell gene expression profiling.
Biol. Reprod. Vol. 75, 705-716, 2006
22. Horsley, V., O’Carroll, D., Tooze, R., Ohinata, Y., Saitou, M., Obukhanych, T., Nussenzweig, M., Tarakhovsky, A., and Fuchs, E.
Blimp1 defines a progenitor population that governs cellular input to the sebaceous gland.
Cell Vol. 126, 587-609, 2006
白根 道子
Michiko Shirane
1. 白根道子、中山敬一
FYVEドメインタンパク質ProtrudinとPI(5)Pによる神経突起形成機構
日本分子生物学会年会(第26回;神戸)
2. 白根道子、中山敬一
FYVE-domain protein Protrudin induces neurite extension.
日本生化学会バイオフロンティアシンポジウム(第3回;鎌倉)
3. 白根道子、中山敬一
膜輸送分子protrudinによる神経突起形成の分子機構。
日本分子生物学会年会(第27回;神戸)
4. 白根道子、中山敬一
Protrudin-Rab11 system regulates directional membrane traffic to induce neuritis formation.
Shirokane International Symposium (2005)
5. 白根道子、中山敬一
Protrudin induces neurite extension by regulating post-Golgi membrane traffic.
日本生化学会大会(第78回;神戸)
6. 白根道子、中山敬一
Protrudin-induced neurite extension is regulated by Rab and MAPK.
日本分子生物学会年会(第28回;福岡)
7. 白根道子、中山敬一
Inhibition of Rab11 by Protrudin induces directional membrane transport and neurite formation.
20th IUBMB International Congress of Biochemistry and Molecular Biology (2006/6/20;Kyoto, Japan)
8. M. Shirane and K. Nakayama
Protrudin induces neurite formation by directional membrane trafficking.
Science Vol. 314: 818-821, 2006
9. Wang, H. Q., Nakaya, Y., Du, Z., Yamane, T., Shirane, M., Kudo, T., Takeda, M., Takebayashi, K., Noda, Y., Nakayama, K. I., Nishimura, M.
Interaction of presenilins with FKBP38 promotes apoptosis by reducing mitochondrial Bcl-2.
Hum. Mol. Genet. Vol. 14: 1889-1902, 2005
豊田 実
Minoru Toyota
1. A. Satoh, M.Toyota, F. Itoh, Y. Sasaki, H. Suzuki, K. Ogi, T. Kikuchi, H. Mita, T. Yamashita, T. Kojima, M. Kusano, M. Fujita, M. Hosokawa, T. Endo, T. Tokino and K. Imai
Epigenetic inactivation of CHFR and sensitivity to microtubule inhibitors in gastric cancer
Cancer Research Vol. 63: 8606-8613(2003)
2. H. Suzuki, D. N. Watkins, K. W. Jair, K. E. Scuebel, S. D. Markowitz, W. D. Chen, T. Pretlow, B. Yang, Y. Akiyama, M. van Engeland, M. Toyaota, T. Kojima, Y. Hinoda, K. Imai, J. G. Herman and S. B. Baylin
Epigenetic inactivation of SFRP genes allows constitutive WNT signaling in colorectal cancer.
Nat. Genet, Vol. 36(No.4): 417-422, 2004
3. A. Satoh, M.Toyota, H. Ikeda, Y. Morimoto, K. Akino, H. Mita, H. Suzuki, Y. Sasaki, T. Kanaseki, Y. Takamura, H. Soejima, T. Urano, K. Yanagihara, T. Endo, Y. Hinoda, M. Fujita, M. Hosokawa, N. Sato, T. Tokino and K. Imai
Epigenetic inactivation of class II transactivator (CIITA) is associated with the absence of interferon-γ-induced HLA-DR expression in colorectal and gastric cancer cells.
Oncogene, Vol. 23: 8876-8886, 2004
4. M. Murai, M.Toyota, H. Suzuki, A. Satoh, Y. Sasaki, K. Akino, M. Ueno, F. Takahashi, M. Kusano, H. Mita, K. Yanagihara, T. Endo, Y. Hinoda, T. Tokino and K. Imai
Aberrant methylation and silencing of BNIP3 gene in colorectal and gastric cancer.
Clin. Cancer Res, Vol. 11: 1021-1027, 2005
5. K. Akino, M. Toyota, H. Suzuki, H. Mita, Y. Sasaki, M. Ohe-Toyota, Jean-Pierre J Issa, Y. Hinoda, T. Tokino and K. Imai.
The RAS effector RASSF2 is a novel tumor suppressor in colorectal cancer.
Gastroenterology, Vol. 129: 156-169, 2005
6. M. Murai, M, Toyota, A. Satoh, H. Suzuki, K. Akino, H. Mita, T. Ishida, L. Shen, G. Garcia-Manero, J-PJ Issa, Y. Hinoda, T. Tokino and K. Imai
Aberrant methylation and silencing of the BNIP3 gene in hematopietic tumors.
British J. Cancer, Vol. 92: 1165-1172, 2005.
7. K. Ogi, M. Toyota, H. Mita, A. Satoh, L. Kashima, Y. Sasaki, H. Suzuki, K. Akino, N. Nishikawa, M. Noguchi, Y. Shinomura, K. Imai, H. Hiratsuka and T. Tokino
Small interfering RNA-induced CHFR silencing sensitizes oral squamous cell cancer cells to microtubule inhibitors.
Cancer Biology & Therapy. Vol. 4:773-780, 2005,
8. K. Terasawa, M. Toyota, S. Sagae, K. Ogi, H. Suzuki, T. Sonoda, K. Akino, R. Maruyama, N. Nishikawa, K. Imai, Y. Shinomura, T. Saito and T. Tokino
Epigenetic inactivation of TCF2 in ovarian cancer and various cancer cell lines.
British J. Cancer, Vol. 94, 914-921, 2006
9. R. Maruyama, F. Aoki, M. Toyata, Y. Sasaki, H. Akashi, H. Mita, H. Suzuki, K. Akino, M. Ohe-Toyota, Y. Maruyama, H. Tatsumi, K. Imai, Y. Shinomura and T. Tokino
Comparative genome analysis identifies the vitamin D receptor as a direct target of p53-mediated transcriptional activation.
Cancer Res. Vol. 66: 4574-4583, 2006
10. K. Akino, M. Toyota, H. Suzuki, T. Imai, R. Maruyama, M. Kusano, N. Nishikawa, Y. Watanabe, Y. Sasaki, T. Abe, E. Yamamoto, I. Terasawa, T. Sonoda, M. Mori, K. Imai, Y. Shinomura and T. Tokino.
Identification of DFNA5 as a target of epigenetic inactivation in gastric cancer.
Cancer Sci. Vol. 98: 88-95, 2007
11. Kusano M, Toyota M, Suzuki H, Akino K, Aoki F, Fujita M, Hosokawa M, Shinomura Y, Imai K, Tokino T
Genetic, epigenetic and clinicopathological features of gastric cancers with CpG island methylator phenotype and an association with Epstein-Barr virus.
Cancer Vol. 106, 1467-1479 (2006)
東山 繁樹
Shigeki Higashiyama
1. Sahin, U., Weskamp, G., Zhou, H., Higashiyama, S., Peschon, J., Hartmann, D., Safting, P. and Blobel, C.P.
Distinct roles for ADAM10 and 17 in ectodomain shedding of six EGFR-ligands.
J. Cell Biol. Vol. 164:769-779, 2004
2. Tanaka, M., Nanba, D., Mori, S., Shiba F., Ishiguro, H., Yoshino, K., Matsuura, N. and Higashiyama, S.
ADAM-binding protein Eve-1 is required for ectodomain shedding of EGF receptor ligands.
J. Biol. Chem. Vol. 279; 41950-41959, 2004
3. Toki, F., Nanba, D., Matsuura, N. and Higashiyama, S.
Ectodomain shedding of membrane-anchored heparin-binding EGF like growth factor and subcellular localization of the C-terminal fragment in a cell cycle.
J. Cell. Physiol. Vol. 202: 839-848, 2005
4. Shirakata, Y., Kimura, R., Nanba, D., Morimoto, C., Yokota, K., Nakamura, M., Mekada, E., Higashiyama, S., and Hashimoto, K.
Heparin-binding EGF-like growth factor is essential for keratinocyte migration in skin wound healing.
J. Cell Science Vol. 118: 2363-2370, 2005
5. Shiraishi, K., Yamasaki, K., Nanba, D., Inoue, H., Hanakawa, Y., Shirakata, Y., Hashimoto, K., and Higashiyama, S.
Pbx1is a major target of PLZF-mediated melanoma cell growth suppression.
Oncogene Vol. 26: 339-348, 2007
廣瀬 哲郎
Tetsurou Hirose
1. 廣瀬哲郎
イントロンを介した遺伝子発現の協調機構。
蛋白質・核酸・酵素, Vol. 49: 1288-1295, 2004
2. 廣瀬哲郎
イントロンから生み出されるsnoRNAの発現戦略と新たな機能。
ゲノム医学, Vol. 4: 29-34, 2004
3. 廣瀬哲郎、M.D. Shu (Yale Univ)、J.A. Steitz (Yale Univ)
マイナー(U12型)イントロンのスプライシングによるEJCアセンブリーとNMDの誘導。
日本RNA学会年会(第6回;熊本)
4. 廣瀬哲郎
RNAの転写後修飾に必要なsnoRNAのユニークな生合成機構。
実験医学(増刊「RNA研究の新展開」), Vol. 22: 71-76, 2004
5. T. Hirose
Novel coupling mechanism between splicing and intron-encoded snoRNP biogenesis.
国際シンポジウム「選択的スプライシングによる多様性の創造」(東京)
6. 井手上賢(東京医科歯科大)、萩原正敏(東京医科歯科大)、廣瀬哲郎
スプライシング依存的RNA結合タンパク質p160と相互作用因子の解析。
日本分子生物学会年会(第27回;神戸)
7. 野島孝之、廣瀬哲郎、萩原正敏
in vitro転写/スプライシング共役反応系の構築。
日本分子生物学会年会(第27回;神戸)
8. 佐野美穂、井手上賢、萩原正敏、廣瀬哲郎
核マトリクス結合タンパク質SRm160の機能ドメインの解析。
日本分子生物学会年会(第27回;神戸)
9. T. Hirose, Mei-Di Shu and Joan A. Steitz
Splicing of U12-type introns deposits an exon junction complex competent to induce nonsense-mediated mRNA decay.
Proc. Nat. Acad. Sci. USA, Vol. 101: 17976-17981, 2004
10. T. Hirose
Strategy for efficient expression of intron-encoded small RNAs.
International symposium: Strategies for the acquirement of functional diversity of proteins(東京)
11. T. Hirose, T. Ideue, M. Nagai, Mei-Di Shu and Joan A Steitz
The ATPase-likespliceosomal protein, X160, is a general intron-binding protein that recruits factors involved in late stages of splicing and post-splicing events.
Cold Spring Harbor Meeting : Eukaryotic mRNA processing」
12. 廣瀬哲郎
核内RNAプロセシングの進行を規定するRNPリモデリング。
実験医学, Vol. 23: 1896-1901, 2005
13. Hirose, T., Ideue, T., Nagai, M., Hagiwara, M., Shu, M-D., Steitz, J.A.
A spliceosomal intron binding protein, IBP160, links position-dependent assembly of intron-encoded box C/D snoRNP to pre-mRNA splicing.
Mol. Cell. Vol. 23, 673-684, 2006
三木 裕明
Hiroaki Miki
1. 三木裕明
細胞骨格・運動がわかる。
「わかる実験医学シリーズ」(羊土社), p18-22, 2004
2. Y. Funato, T. Terabayashi, N. Suenaga, M. Seiki, T. Takenawa and H. Miki
IRSp53/Eps8 complex is important for positive regulation of Rac and cancer cell motility/invasiveness.
Cancer Res, Vol. 64: 5237-5244, 2004
3. K. Takenaka, H. Nakagawa, S. Miyamoto and H. Miki
The pre-mRNA splicing factor SF3a66 functions as a microtuble binding and bundling protein.
Biochem. J, Vol. 382: 223-230, 2004
4. S. Verma, A. M. Shewan, J. A. Scott, F. M. Helwani, N. R. Den Elzen, H. Miki, T. Takenawa and A. S. Yap
Arp2/3 activity is necessary for efficient formation of E-cadherin adhesive contacts.
Biochem. J, Vol. 279: 34062-34071, 2004
5. K. Kawamura, K. Takano, S. Suetsugu, S. Kurisu, D. Yamazaki, H. Miki, T. Takenawa and T. Endo
N-WASP and WAVE2 acting downstream of phospahtidylinositol 3-kinase are required for myogenic cell migration induced by hepatocyte growth factor.
J. Biol. Chem, Vol. 279: 54862-54871, 2004
6. H. Yamaguchi, M. Lorenz, S. Kenpiak, C. Sarmiento, S. Coniglio, M. Symons, J. Segall, R. Eddy, H. Miki, T. Takenawa and J. Condeelis
Molecular mechanisms of invadopodium formation: the role of N-WASP-Arp2/3 complex pathway and cofilin.
J. Cell Biol, Vol. 168: 441-452, 2005
7. A. Oda, H. Miki,, I. Wada, H. Yamaguchi, D. Yamazaki, S. Suetsugu, M. Nakajima, A. Nakayama, K. Okawa, H. Miyazaki, K. Matsuno, H. D. Ochs, L. M. Machesky, H. Fujita and Takenawa, T.
WAVE/Scars in Platelets.
Blood, Vol. 105: 3141-3148, 2005
8. H. Bierne, H. Miki, M. Innocenti, G. Scita, F. B. Gertler, T.Takenawa, T., and P. Cossart
WASP-related proteins Abi1 and Ena/VASP are required for Listeria invasion induced by the Met receptor.
J. Cell Sci, Vol.: 118: 1537-1547, 2005
9. Y. Funato, T. Michiue, M. Asashima and H. Miki
The thioredoxin-related redox-regulating protein nucleoredoxin inhibits Wnt/b-catenin signaling through Dishevelled.
Nature Cell Biology, Vol. 8: 501-508, 2006
村田 茂穂
Shigeo Murata
1. Y. Hirano, K. B. Hendil, H. Yashiroda, S. Iemura, T. Natsume, K. Tanaka and S. Murata
Identification of a novel chaperone complex involved in assembly of mammalian 203S proteasome.
6th Workshop on proteasomes(2005, Paris)
2. Y. Hirano, K. B. Hendil, H. Yashiroda, S. Iemura, R. Nagane, Y. Hioki, T. Natsume, K. Tanaka and S. Murata
A heterodimeric complex that promotes the assembly of mammalian 20S proteasome.
Nature, Vol. 437: 1381-1385, 2005
3. M. Komatsu, S. Waguri, T. Ueno, J. Iwata, S. Murata, I. Tanida, J. Ezaki, N. Mizushima, Y. Ohsumi, Y. Uchiyama, E. Kominami, K. Tanaka and T. Chiba
Impairment of starvation-induced and consitutive autophagy in Atg7-deficient mice.
J. Cell Biol, Vol. 169: 425-434, 2005
4. M. Zhang, C. Obata, H. Hisaeda, K. Ishii, S. Murata, T. Chiba, K. Tanaka, Y. Li, M. Furue, B. Chou, T. Imai, X. Duan and K. Himeno
A novel DNA vaccine based on ubiquitin-proteasome pathway targeting 'self'-antigens expressed in melanoma/melanocyte.
Gene Ther, Vol. 12: 1049-1057, 2005
5. X. Duan, H. Hisaeda, J. Shen, L. Tu, T. Imai, B. Chou, S. Murata, T. Chiba, K. Tanaka, H. J. Fehling, T. Koga, K. Sueishi and K. Himeno
The ubiqutin-proteasome system plays essential roles in presenting an 8-mer CTL epitope expressed in APC to corresponding CD8+T cells.
Int. Immunol, Vol. 18: 679-687, 2006
6. K. Ishii, H. Hisaeda, X. Duan, T. Imai, T. Sakai, H.J. Fehling, S. Murata, T. Chiba, K. Tanaka, S. Hamano, M. Sano, A. Yano and K. Himeno
The involvement of immunoproteasomes in induction of MHC class I-restricted immunity targeting Toxoplasma SAG1.
Microbe Infect, Vol. 8: 1045-1053, 2006
7. M. Komatsu, S. Waguri, T. Chiba, S. Murata, J. Iawta, I. Tanida, T. Ueno, M. Koike, Y. Uchiyama, E. Kominami and K. Tanaka
Loss of autophagy in the central nervous system causes neurodegeneration in mice.
Nature, Vol. 441: 880-884, 2006
8. Kirisako, T., Kamei, K., Murata, S., Kato, M., Fukumoto, H., Kanie, M., Sano, S., Tokunaga, F., Tanaka, K., and Iwai, K.
A ubiquitin ligase complex assembles linear polyubiquitin chains.
EMBO J Vol. 25: 4877-4887, 2006
9. Hamazaki, J., Iemura, S., Natsume, T., Yashiroda, H., Tanaka, K., and Murata, S.
A novel proteasome interacting protein recruits UCH37 to 26S proteasomes.
EMBO J Vol. 25: 4524-4536, 2006
山下 潤
Jun Yamashita
1. Yamashita JK, Takano M, Hiraoka-Kanie M, Shimazu C, Yan P, Yanagi K, Nakano A, Inoue E, Kita F, Nishikawa SI.
Prospective identification of cardiac progenitor potentials by a novel single cell-based cardiomyocyte induction.
FASEB J, Vol. 19: 1534-1536, 2005
2. Suzuki Y, Komi Y, Ashino H, Yamashita J, Inoue J, Yoshiki A, Eichmann A, Amanuma H, Kojima S.
Retinoic acid controls blood vessel formation by modulating endothelial and mural cell interaction via suppression of TIE2 signaling in vascular progenitor cells.
Blood Vol. 104: 166-169, 2004
3. Huang H, Nakayama Y, Qin K, Yamamoto K, Ando J, Yamashita J, Itoh H, Kanda K, Yaku H, Okamoto Y, Nemoto Y.
Differentiation from embryonic stem cells to vascular wall cells under in vitro pulsatile flow loading.
J. Artif. Organ Vol. 8: 110-118, 2005
4. Yamamoto K, Sokabe T, Watabe T, Miyazono K, Yamashita JK, Obi S, Ohmura N, Matsushita A, Kamiya A, Ando J.
Fluid shear stress induces differentiation of Flk-1-positive embryonic stem cells into vascular endothelial cells in vitro.
Am J Physiol Heart Circ Physiol, Vol. 288: H1915-1924, 2005
5. Nakao Y, Yoshida S, Matsunaga S, Shindoh N, Terada Y, Nagai K, Yamashita JK, Ganesan A, Soest van RW, Fusetani N.
Azumamides A?E: Histone Deacetylase Inhibitory Cyclic Tetrapeptides from the Marine Sponge Mycale izuensis.
Angew Chem Int Ed, Vol. 45: 7553-7557, 2006
6. Kono T, Kubo H, Shimazu C, Ueda Y, Takahashi M, Yanagi K, Fujita N, Tsuruo T, Wada H, Yamashita JK.
Differentiation of lymphatic endothelial cells from embryonic stem cells on OP9 stromal cells.
Arterioscler Thromb Vasc Biol, Vol. 26: 2070-2076, 2006
7. Yurugi-Kobayashi T, Itoh H, Schroeder T, Nakano A, Narazaki G, Kita F, Yanagi K, Hiraoka-Kanie M, Inoue E, Ara T, Nagasawa T, Just U, Nakao K, Nishikawa SI, Yamashita JK.
Adrenomedullin/cyclic AMP pathway induces Notch activation and differentiation of arterial endothelial cells from vascular progenitors.
Arterioscler Thromb Vasc Biol, Vol. 26: 1977-1984, 2006
8. Hiraoka-Kanie M, Miyagishi M, Yamashita JK.
Differentiation stage-specific analysis of gene function with inducible short hair-pin RNA in differentiating embryonic stem cells.
Biochem Biophys Res Commun, Vol. 351: 669-674, 2006

 
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