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「蛍光生物学」の最前線 8-1

参考文献

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3)  S. Isogai, N. D. Lawson, S. Torrealday, M. Horiguchi and B. M. Weinstein, “Angiogenic network formation in the developing vertebrate trunk”, Development 2003, 130, 5281-5290.

4)  N. D. Lawson and B. M. Weinstein, “In vivo imaging of embryonic vascular development using transgenic zebrafish”, Dev. Biol., 2002, 248, 307-318.

5)  S. W. Jin, D. Beis, T. Mitchell, J. N. Chen and D. Y. Stainier, “Cellular and molecular analyses of vascular tube and lumen formation in zebrafish”, Development 2005, 132, 5199-5209.

6)  R. W. Koster and S. E. Fraser, “Tracing transgene expression in living zebrafish embryos”, Dev. Biol., 2001, 233, 329-346.

7)  S. F. De, I. Segura, B. K. De, P. J. Hohensinner and P. Carmeliet, “Mechanisms of vessel branching: filopodia on endothelial tip cells lead the way”, Arterioscler Thromb. Vasc. Biol., 2009, 29, 639-649.

8)  J. Riedl, A. H. Crevenna, K. Kessenbrock et al., “Lifeact: a versatile marker to visualize F-actin”, Nat. Methods, 2008, 5, 605-607.

9)  C. D. Nobes and A. Hall, “Rho, Rac, and Cdc42 GTPases regulate the assembly of multimolecular focal complexes associated with actin stress fibers, lamellipodia, and filopodia”, Cell, 1995, 81, 53-62.

10)  N. Mochizuki, S. Yamashita, K. Kurokawa et al., “Spatio-temporal images of growth-factor-induced activation of Ras and Rap1”, Nature, 2001, 411, 1065-1068.

11) R. E. Itoh, K. Kurokawa, Y. Ohba et al., “Activation of rac and cdc42 video imaged by fluorescent resonance energy transfer-based single-molecule probes in the membrane of living cells”, Mol. Cell Biol., 2002, 22, 6582-6591.

12) K. Aoki and M. Matsuda, “Visualization of small GTPase activity with fluorescence resonance energy transfer-based biosensors”, Nat. Protoc., 2009, 4, 1623-1631.

13) M. S. Nur-E-Kamal, J. M. Kamal, M. M. Qureshi and H. Maruta, “The CDC42-specific inhibitor derived from ACK-1 blocks v-Ha-Ras-induced transformation”, Oncogene, 1999, 18, 7787-7793.

14) B. Vanhaesebroeck, S. J. Leevers, G. Panayotou and M. D. Waterfield, “Phosphoinositide 3-kinases: a conserved family of signal transducers”, Trends Biochem. Sci., 1997, 22, 267-272.

15) M. Sugiyama, A. Sakaue-Sawano, T. Iimura et al., “Illuminating cell-cycle progression in the developing zebrafish embryo”, Proc. Natl. Acad. Sci. USA, 2009, 106, 20812-20817.

16) A. Sakaue-Sawano, H. Kurokawa, T. Morimura et al., “Visualizing spatiotemporal dynamics of multicellular cell-cycle progression”, Cell, 2008, 132, 487-498.

17) G. J. Lieschke and P. D. Currie, “Animal models of human disease: zebrafish swim into view”, Nat. Rev. Genet., 2007, 8, 353-367.


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