[1] |
Agrawal, N., Kango, M., Mishra, A. et al. Dev. Biol., 172 (1995),pp. 218-229
|
[2] |
Baumgartner, R., Poernbacher, I., Buser, N. et al. Dev. Cell, 18 (2010),pp. 309-316
|
[3] |
Bennett, F.C., Harvey, K.F. Curr. Biol., 16 (2006),pp. 2101-2110
|
[4] |
Betschinger, J., Eisenhaber, F., Knoblich, J.A. Phosphorylation-induced autoinhibition regulates the cytoskeletal protein Lethal (2) giant larvae Curr. Biol., 15 (2005),pp. 276-282
|
[5] |
Bilder, D. Genes Dev., 18 (2004),pp. 1909-1925
|
[6] |
Bilder, D., Li, M., Perrimon, N. Science, 289 (2000),pp. 113-116
|
[7] |
Bilder, D., Perrimon, N. Localization of apical epithelial determinants by the basolateral PDZ protein Scribble Nature, 403 (2000),pp. 676-680
|
[8] |
Bilder, D., Schober, M., Perrimon, N. Integrated activity of PDZ protein complexes regulates epithelial polarity Nat. Cell Biol., 5 (2003),pp. 53-58
|
[9] |
Bissell, M.J., Radisky, D. Putting tumours in context Nat. Rev. Cancer, 1 (2001),pp. 46-54
|
[10] |
Brumby, A., Secombe, J., Horsfield, J. et al. Genetics, 168 (2004),pp. 227-251
|
[11] |
Brumby, A.M., Richardson, H.E. EMBO J., 22 (2003),pp. 5769-5779
|
[12] |
Brumby, A.M., Richardson, H.E. Nat. Rev. Cancer, 5 (2005),pp. 626-639
|
[13] |
Cai, J., Zhang, N., Zheng, Y. et al. The Hippo signaling pathway restricts the oncogenic potential of an intestinal regeneration program Genes Dev., 24 (2010),pp. 2383-2388
|
[14] |
Casal, J., Lawrence, P.A., Struhl, G. Two separate molecular systems, Dachsous/Fat and Starry night/Frizzled, act independently to confer planar cell polarity Development, 133 (2006),pp. 4561-4572
|
[15] |
Chen, C.-L., Gajewski, K.M., Hamaratoglu, F. et al. Proc. Natl. Acad. Sci. USA, 107 (2010),pp. 15810-15815
|
[16] |
Cho, E., Feng, Y., Rauskolb, C. et al. Delineation of a Fat tumor suppressor pathway Nat. Genet., 38 (2006),pp. 1142-1150
|
[17] |
Cordero, J.B., Macagno, J.P., Stefanatos, R.K. et al. Oncogenic Ras diverts a host TNF tumor suppressor activity into tumor promoter Dev. Cell, 18 (2010),pp. 999-1011
|
[18] |
Thakur, M.D., Feng, Y., Jagannathan, R. et al. Ajuba LIM proteins are negative regulators of the Hippo signaling pathway Curr. Biol., 20 (2010),pp. 657-662
|
[19] |
Dong, J., Feldmann, G., Huang, J. et al. Cell, 130 (2007),pp. 1120-1133
|
[20] |
Dupont, S., Morsut, L., Aragona, M. et al. Role of YAP/TAZ in mechanotransduction Nature, 474 (2011),pp. 179-183
|
[21] |
Fernandez, B.G., Gaspar, P., Bras-Pereira, C. et al. Development, 138 (2011),pp. 2337-2346
|
[22] |
Fish, E.M., Molitoris, B.A. Alterations in epithelial polarity and the pathogenesis of disease states N. Engl. J. Med, 330 (1994),pp. 1580-1588
|
[23] |
Gao, X., Pan, D. TSC1 and TSC2 tumor suppressors antagonize insulin signaling in cell growth Genes. Dev., 15 (2001),pp. 1383-1392
|
[24] |
Gateff, E. Science, 200 (1978),pp. 1448-1459
|
[25] |
Gateff, E., Schneiderman, H.A. Am. Zool., 7 (1967),p. 760
|
[26] |
Genevet, A., Tapon, N. The Hippo pathway and apico-basal cell polarity Biochem. J., 436 (2011),pp. 213-224
|
[27] |
Genevet, A., Wehr, M.C., Brain, R. et al. Kibra is a regulator of the Salvador/Warts/Hippo signaling network Dev. Cell, 18 (2010),pp. 300-308
|
[28] |
Goulev, Y., Fauny, J.D., Gonzalez-Marti, B. et al. Curr. Biol., 18 (2008),pp. 435-441
|
[29] |
Grzeschik, N.A., Amin, N., Secombe, J. et al. Dev. Biol., 311 (2007),pp. 106-123
|
[30] |
Grzeschik, N.A., Parsons, L.M., Allott, M.L. et al. Lgl, aPKC, and Crumbs regulate the Salvador/Warts/Hippo pathway through two distinct mechanisms Curr. Biol., 20 (2010),pp. 573-581
|
[31] |
Halder, G., Johnson, R.L. Hippo signaling: growth control and beyond Development, 138 (2011),pp. 9-22
|
[32] |
Hamaratoglu, F., Willecke, M., Kango-Singh, M. et al. The tumour-suppressor genes NF2/Merlin and Expanded act through Hippo signalling to regulate cell proliferation and apoptosis Nat. Cell Biol., 8 (2006),pp. 27-36
|
[33] |
Hanahan, D., Weinberg, R.A. Hallmarks of cancer: the next generation Cell, 144 (2011),pp. 646-674
|
[34] |
Hariharan, I.K., Bilder, D. Ann. Rev. Genet., 40 (2006),pp. 335-361
|
[35] |
Harvey, K., Tapon, N. The Salvador-Warts-Hippo pathway—an emerging tumour-suppressor network Nat. Rev. Cancer, 7 (2007),pp. 182-191
|
[36] |
Harvey, K.F., Pfleger, C.M., Hariharan, I.K. Cell, 114 (2003),pp. 457-467
|
[37] |
Hough, C.D., Woods, D.F., Park, S. et al. Genes. Dev., 11 (1997),pp. 3242-3253
|
[38] |
Huang, J., Wu, S., Barrera, J. et al. Cell, 122 (2005),pp. 421-434
|
[39] |
Humbert, P.O., Grzeschik, N.A., Brumby, A.M. et al. Control of tumourigenesis by the Scribble/Dlg/Lgl polarity module Oncogene, 27 (2008),pp. 6888-6907
|
[40] |
Igaki, T., Pagliarini, R.A., Xu, T. Curr. Biol., 16 (2006),pp. 1139-1146
|
[41] |
Igaki, T., Pastor-Pareja, J.C., Aonuma, H. et al. Dev. Cell, 16 (2009),pp. 458-465
|
[42] |
Ishikawa, H.O., Takeuchi, H., Haltiwanger, R.S. et al. Four-jointed is a golgi kinase that phosphorylates a subset of cadherin domains Science, 321 (2008),pp. 401-404
|
[43] |
Jacob, L., Opper, M., Metzroth, B. et al. Cell, 50 (1987),pp. 215-225
|
[44] |
Jia, J., Zhang, W., Wang, B. et al. Genes Dev., 17 (2003),pp. 2514-2519
|
[45] |
Jiang, H., Grenley, M.O., Bravo, M.-J. et al. Cell Stem Cell, 8 (2011),pp. 84-95
|
[46] |
Justice, R.W., Zilian, O., Woods, D.F. et al. Genes Dev., 9 (1995),pp. 534-546
|
[47] |
Kango-Singh, M., Nolo, R., Tao, C. et al. Development, 129 (2002),pp. 5719-5730
|
[48] |
Karpowicz, P., Perez, J., Perrimon, N. The Hippo tumor suppressor pathway regulates intestinal stem cell regeneration Development, 137 (2010),pp. 4135-4145
|
[49] |
Knust, E., Bossinger, O. Composition and formation of intercellular junctions in epithelial cells Science, 298 (2002),pp. 1955-1959
|
[50] |
Lai, Z.-C., Wei, X., Shimizu, T. et al. Control of cell proliferation and apoptosis by mob as tumor suppressor, mats Cell, 120 (2005),pp. 675-685
|
[51] |
Laprise, P., Lau, K.M., Harris, K.P. et al. Nature, 459 (2009),pp. 1141-1145
|
[52] |
Laprise, P., Tepass, U. Trends Cell Biol., 21 (2011),pp. 401-408
|
[53] |
Leong, G., Goulding, K., Amin, N. et al. BMC Biol., 7 (2009),p. 62
|
[54] |
Ling, C., Zheng, Y., Yin, F. et al. The apical transmembrane protein Crumbs functions as a tumor suppressor that regulates Hippo signaling by binding to Expanded Proc. Natl. Acad. Sci. USA, 107 (2010),pp. 10532-10537
|
[55] |
Lu, H., Bilder, D. Nat. Cell Biol., 7 (2005),pp. 1232-1239
|
[56] |
Lu, L., Li, Y., Kim, S.M. et al. Hippo signaling is a potent in vivo growth and tumor suppressor pathway in the mammalian liver Proc. Natl. Acad. Sci. USA, 107 (2010),pp. 1437-1442
|
[57] |
Mahoney, P.A., Weber, U., Onofrechuk, P. et al. Cell, 67 (1991),pp. 853-868
|
[58] |
Mao, Y., Rauskolb, C., Cho, E. et al. Development, 133 (2006),pp. 2539-2551
|
[59] |
Matakatsu, H., Blair, S.S. Separating the adhesive and signaling functions of the Fat and Dachsous protocadherins Development, 133 (2006),pp. 2315-2324
|
[60] |
McCartney, B.M., Kulikauskas, R.M., LaJeunesse, D.R. et al. Development, 127 (2000),pp. 1315-1324
|
[61] |
Moberg, K.H., Bell, D.W., Wahrer, D.C.R. et al. Nature, 413 (2001),pp. 311-316
|
[62] |
Moberg, K.H., Schelble, S., Burdick, S.K. et al. Dev. Cell, 9 (2005),pp. 699-710
|
[63] |
Nelson, W.J. Adaptation of core mechanisms to generate cell polarity Nature, 422 (2003),pp. 766-774
|
[64] |
Nolo, R., Morrison, C.M., Tao, C. et al. The bantam microRNA is a target of the hippo tumor-suppressor pathway Curr. Biol., 16 (2006),pp. 1895-1904
|
[65] |
Oh, H., Irvine, K.D. Development, 135 (2008),pp. 1081-1088
|
[66] |
Oh, H., Irvine, K.D. Oncogene, 28 (2009),pp. 1916-1927
|
[67] |
Oh, H., Irvine, K.D. Yorkie: the final destination of Hippo signaling Trends Cell Biol., 20 (2010),pp. 410-417
|
[68] |
Ohsawa, S., Sugimura, K., Takino, K. et al. Dev. Cell, 20 (2011),pp. 315-328
|
[69] |
Pagliarini, R.A., Xu, T. Science, 302 (2003),pp. 1227-1231
|
[70] |
Pan, D. The Hippo signaling pathway in development and cancer Dev. Cell, 19 (2010),pp. 491-505
|
[71] |
Pantalacci, S., Tapon, N., Leopold, P. Nat. Cell Biol., 5 (2003),pp. 921-927
|
[72] |
Polesello, C., Huelsmann, S., Brown, N.H. et al. Curr. Biol., 16 (2006),pp. 2459-2465
|
[73] |
Potter, C.J., Huang, H., Xu, T. Cell, 105 (2001),pp. 357-368
|
[74] |
Rauskolb, C., Pan, G., Reddy, B.V.V.G. et al. Zyxin links Fat signaling to the Hippo pathway PLoS Biol., 9 (2011),p. e1000624
|
[75] |
Ren, F., Wang, B., Yue, T. et al. Proc. Natl. Acad. Sci. USA, 107 (2010),pp. 21064-21069
|
[76] |
Ribeiro, P.S., Josué, F., Wepf, A. et al. Combined functional genomic and proteomic approaches identify a PP2A complex as a negative regulator of Hippo signaling Mol. Cell, 39 (2010),pp. 521-534
|
[77] |
Robinson, B.S., Huang, J., Hong, Y. et al. Curr. Biol., 20 (2010),pp. 582-590
|
[78] |
Rogulja, D., Rauskolb, C., Irvine, K.D. Morphogen control of wing growth through the Fat signaling pathway Dev. Cell, 15 (2008),pp. 309-321
|
[79] |
Sansores-Garcia, L., Bossuyt, W., Wada, K.-I. et al. Modulating F-actin organization induces organ growth by affecting the Hippo pathway EMBO J., 30 (2011),pp. 2325-2335
|
[80] |
Saucedo, L.J., Edgar, B.A. Filling out the Hippo pathway Nat. Rev. Mol. Cell Biol., 8 (2007),pp. 613-621
|
[81] |
Schlegelmilch, K., Mohseni, M., Kirak, O. et al. Yap1 acts downstream of α-catenin to control epidermal proliferation Cell, 144 (2011),pp. 782-795
|
[82] |
Shaw, R.L., Kohlmaier, A., Polesello, C. et al. Development, 137 (2010),pp. 4147-4158
|
[83] |
Silva, E., Tsatskis, Y., Gardano, L. et al. The tumor-suppressor gene fat controls tissue growth upstream of expanded in the Hippo signaling pathway Curr. Biol., 16 (2006),pp. 2081-2089
|
[84] |
Silvis, M.R., Kreger, B.T., Lien, W.-H. et al. α-Catenin is a tumor suppressor that controls cell accumulation by regulating the localization and activity of the transcriptional coactivator Yap1 Sci. Signal., 4 (2011),p. ra33
|
[85] |
Skouloudaki, K., Puetz, M., Simons, M. et al. Scribble participates in Hippo signaling and is required for normal zebrafish pronephros development Proc. Natl. Acad. Sci. USA, 106 (2009),pp. 8579-8584
|
[86] |
Staley, B.K., Irvine, K.D. Warts and Yorkie mediate intestinal regeneration by influencing stem cell proliferation Curr. Biol., 20 (2010),pp. 1580-1587
|
[87] |
Tanentzapf, G., Tepass, U. Interactions between the crumbs, lethal giant larvae and bazooka pathways in epithelial polarization Nat. Cell Biol., 5 (2003),pp. 46-52
|
[88] |
Tapon, N., Harvey, K.F., Bell, D.W. et al. Cell, 110 (2002),pp. 467-478
|
[89] |
Tepass, U., Tanentzapf, G., Ward, R. et al. Ann. Rev. Genet., 35 (2001),pp. 747-784
|
[90] |
Thompson, B.J., Cohen, S.M. Cell, 126 (2006),pp. 767-774
|
[91] |
Thompson, B.J., Mathieu, J., Sung, H.-H. et al. Dev. Cell, 9 (2005),pp. 711-720
|
[92] |
Tyler, D.M., Baker, N.E. Dev. Biol., 305 (2007),pp. 187-201
|
[93] |
Tyler, D.M., Li, W., Zhuo, N. et al. Genetics, 175 (2007),pp. 643-657
|
[94] |
Udan, R.S., Kango-Singh, M., Nolo, R. et al. Hippo promotes proliferation arrest and apoptosis in the Salvador/Warts pathway Nat. Cell Biol., 5 (2003),pp. 914-920
|
[95] |
Vaccari, T., Bilder, D. Dev. Cell, 9 (2005),pp. 687-698
|
[96] |
Varelas, X., Samavarchi-Tehrani, P., Narimatsu, M. et al. The Crumbs complex couples cell density sensing to Hippo-dependent control of the TGF-β-SMAD pathway Dev. Cell, 19 (2010),pp. 831-844
|
[97] |
Wei, X., Shimizu, T., Lai, Z.-C. EMBO J, 26 (2007),pp. 1772-1781
|
[98] |
Willecke, M., Hamaratoglu, F., Kango-Singh, M. et al. The Fat cadherin acts through the hippo tumor-suppressor pathway to regulate tissue size Curr. Biol., 16 (2006),pp. 2090-2100
|
[99] |
Wirtz-Peitz, F., Knoblich, J.A. Lethal giant larvae take on a life of their own Trends Cell Biol., 16 (2006),pp. 234-241
|
[100] |
Woods, D.F., Bryant, P.J. Dev. Biol., 134 (1989),pp. 222-235
|
[101] |
Woods, D.F., Bryant, P.J. Cell, 66 (1991),pp. 451-464
|
[102] |
Wu, M., Pastor-Pareja, J.C., Xu, T. Interaction between RasV12 and scribbled clones induces tumour growth and invasion Nature, 463 (2010),pp. 545-548
|
[103] |
Wu, S., Huang, J., Dong, J. et al. Hippo encodes a Ste-20 family protein kinase that restricts cell proliferation and promotes apoptosis in conjunction with Salvador and warts Cell, 114 (2003),pp. 445-456
|
[104] |
Wu, S., Liu, Y., Zheng, Y. et al. The TEAD/TEF family protein Scalloped mediates transcriptional output of the Hippo growth-regulatory pathway Dev. Cell, 14 (2008),pp. 388-398
|
[105] |
Xu, N., Wang, S.Q., Tan, D. et al. Dev. Biol., 354 (2011),pp. 31-43
|
[106] |
Xu, T., Rubin, G.M. Development, 117 (1993),pp. 1223-1237
|
[107] |
Xu, T., Wang, W., Zhang, S. et al. Development, 121 (1995),pp. 1053-1063
|
[108] |
Yang, C.-H., Axelrod, J.D., Simon, M.A. Cell, 108 (2002),pp. 675-688
|
[109] |
Yu, J., Zheng, Y., Dong, J. et al. Kibra functions as a tumor suppressor protein that regulates Hippo signaling in conjunction with Merlin and Expanded Dev. Cell, 18 (2010),pp. 288-299
|
[110] |
Zhang, L., Ren, F., Zhang, Q. et al. The TEAD/TEF family of transcription factor Scalloped mediates Hippo signaling in organ size control Dev. Cell, 14 (2008),pp. 377-387
|
[111] |
Zhao, B., Li, L., Lei, Q. et al. The Hippo-YAP pathway in organ size control and tumorigenesis: an updated version Genes Dev., 24 (2010),pp. 862-874
|
[112] |
Zhao, M., Szafranski, P., Hall, C.A. et al. Genetics, 178 (2008),pp. 1947-1971
|