-
1
-
-
34548444180
-
Mechanisms of palatal epithelial seam disintegration by transforming growth factor (TGF) beta3
-
Ahmed, S., Liu, C.-C., and Nawshad, A. (2007). Mechanisms of palatal epithelial seam disintegration by transforming growth factor (TGF) beta3. Dev. Biol. 309, 193-207.
-
(2007)
Dev. Biol
, vol.309
, pp. 193-207
-
-
Ahmed, S.1
Liu, C.-C.2
Nawshad, A.3
-
2
-
-
78649883292
-
Competition amongst Eph receptors regulates contact inhibition of locomotion and invasiveness in prostate cancer cells
-
Astin, J. W., Batson, J., Kadir, S., Charlet, J., Persad, R. A., Gillatt Astin, J. W., Batson, J., Kadir, S., Charlet, J., Persad, R. A., Gillatt D., Oxley, J.D., and Nobes, C.D. (2010). Competition amongst Eph receptors regulates contact inhibition of locomotion and invasiveness in prostate cancer cells. Nat. Cell Biol. 12, 1194-1204.
-
(2010)
Nat. Cell Biol
, vol.12
, pp. 1194-1204
-
-
Astin, J.W.1
Batson, J.2
Kadir, S.3
Charlet, J.4
Persad, R.A.5
Gillatt Astin, J.W.6
Batson, J.7
Kadir, S.8
Charlet, J.9
Persad, R.A.10
Gillatt, D.11
Oxley, J.D.12
Nobes, C.D.13
-
3
-
-
36849081210
-
ephrinB1 signals from the cell surface to the nucleus by recruitment of STAT3
-
Bong, Y.-S., Lee, H.-S., Carim-Todd, L., Mood, K., Nishanian, T. G., Tessarollo, L., and Daar, I. O. (2007). ephrinB1 signals from the cell surface to the nucleus by recruitment of STAT3. Proc. Natl. Acad. Sci. U.S.A. 104, 17305-17310.
-
(2007)
Proc. Natl. Acad. Sci. U.S.A
, vol.104
, pp. 17305-17310
-
-
Bong, Y.-S.1
Lee, H.-S.2
Carim-Todd, L.3
Mood, K.4
Nishanian, T.G.5
Tessarollo, L.6
Daar, I.O.7
-
4
-
-
77956849819
-
Ephrin-B1 forward signaling regulates craniofacial morphogenesis by controlling cell proliferation across Eph-ephrin boundaries
-
Bush, J. O., and Soriano, P. (2010). Ephrin-B1 forward signaling regulates craniofacial morphogenesis by controlling cell proliferation across Eph-ephrin boundaries. Genes Dev. 24, 2068-2080.
-
(2010)
Genes Dev
, vol.24
, pp. 2068-2080
-
-
Bush, J.O.1
Soriano, P.2
-
5
-
-
1642514680
-
Death is the major fate of medial edge epithelial cells and the cause of basal lamina degradation during palatogenesis
-
Cuervo, R., and Covarrubias, L. (2004). Death is the major fate of medial edge epithelial cells and the cause of basal lamina degradation during palatogenesis. Development 131, 15-24.
-
(2004)
Development
, vol.131
, pp. 15-24
-
-
Cuervo, R.1
Covarrubias, L.2
-
6
-
-
64049096339
-
Soluble ephrin-B2 mediates apoptosis in retinal neovascularization and in endothelial cells
-
Davies, M.H., Zamora, D.O., Smith, J. R., and Powers, M. R. (2009). Soluble ephrin-B2 mediates apoptosis in retinal neovascularization and in endothelial cells. Microvasc. Res. 77, 382-386.
-
(2009)
Microvasc. Res
, vol.77
, pp. 382-386
-
-
Davies, M.H.1
Zamora, D.O.2
Smith, J.R.3
Powers, M.R.4
-
7
-
-
1642273208
-
Ephrin-B1 forward and reverse signaling are required during mouse development
-
Davy, A., Aubin, J., and Soriano, P. (2004). Ephrin-B1 forward and reverse signaling are required during mouse development. Genes Dev. 18, 572-583.
-
(2004)
Genes Dev
, vol.18
, pp. 572-583
-
-
Davy, A.1
Aubin, J.2
Soriano, P.3
-
8
-
-
79957581217
-
Ephrin-B reverse signaling controls septation events at the embryonic midline through separate tyrosine phosphorylation-independent signaling avenues
-
Dravis, C., and Henkemeyer, M. (2011). Ephrin-B reverse signaling controls septation events at the embryonic midline through separate tyrosine phosphorylation-independent signaling avenues. Dev. Biol. 355, 138-151.
-
(2011)
Dev. Biol
, vol.355
, pp. 138-151
-
-
Dravis, C.1
Henkemeyer, M.2
-
9
-
-
3042587215
-
Bidirectional signaling mediated by ephrin-B2 and EphB2 controls urorectal development
-
Dravis, C., Yokoyama, N., Chumley, M. J., Cowan, C. A., Silvany, R. E., Shay, J., Baker, L. A., and Henkemeyer, M. (2004). Bidirectional signaling mediated by ephrin-B2 and EphB2 controls urorectal development. Dev. Biol. 271, 272-290.
-
(2004)
Dev. Biol
, vol.271
, pp. 272-290
-
-
Dravis, C.1
Yokoyama, N.2
Chumley, M.J.3
Cowan, C.A.4
Silvany, R.E.5
Shay, J.6
Baker, L.A.7
Henkemeyer, M.8
-
10
-
-
0024576714
-
Medial edge epithelium transforms to mesenchyme after embryonic palatal shelves fuse
-
Fitchett, J. E., and Hay, E. D. (1989). Medial edge epithelium transforms to mesenchyme after embryonic palatal shelves fuse. Dev. Biol. 131, 455-474.
-
(1989)
Dev. Biol
, vol.131
, pp. 455-474
-
-
Fitchett, J.E.1
Hay, E.D.2
-
11
-
-
70350780571
-
Dissociation of EphB2 signaling pathways mediating progenitor cell proliferation and tumor suppression
-
Genander, M., Halford, M. M., Xu, N.-J., Eriksson, M., Yu, Z., Qiu, Z., Martling, A., Greicius, G., Thakar Genander, M., Halford, M. M., Xu, N.-J., Eriksson, M., Yu, Z., Qiu, Z., Martling, A., Greicius, G., Thakar S., Catchpole, T., Chumley, M. J., Zdunek, S., Wang, C., Holm, T., Goff, S. P., Pettersson, S., Pestell, R. G., Henkemeyer, M., and Frisén, J. (2009). Dissociation of EphB2 signaling pathways mediating progenitor cell proliferation and tumor suppression. Cell 139, 679-692.
-
(2009)
Cell
, vol.139
, pp. 679-692
-
-
Genander, M.1
Halford, M.M.2
Xu, N.-J.3
Eriksson, M.4
Yu, Z.5
Qiu, Z.6
Martling, A.7
Greicius, G.8
Thakar Genander, M.9
Halford, M.M.10
Xu, N.-J.11
Eriksson, M.12
Yu, Z.13
Qiu, Z.14
Martling, A.15
Greicius, G.16
Thakar, S.17
Catchpole, T.18
Chumley, M.J.19
Zdunek, S.20
Wang, C.21
Holm, T.22
Goff, S.P.23
Pettersson, S.24
Pestell, R.G.25
Henkemeyer, M.26
Frisén, J.27
more..
-
12
-
-
0013823708
-
Cell death in normal development
-
Glücksmann, A. (1965). Cell death in normal development. Arch. Biol. 76, 419-437.
-
(1965)
Arch. Biol
, vol.76
, pp. 419-437
-
-
Glücksmann, A.1
-
13
-
-
79955486858
-
mTORC1 and mTORC2 regulate, EMT, motility, and metastasis of colorectal cancer via RhoA and Rac1 signaling pathways
-
Gulhati, P., Bowen, K. A., Liu, J., Stevens, P. D., Rychahou, P. G., Chen, M., Lee, E. Y., Weiss, H. L., O'Connor, K.L., Gao, T.,and Evers, B. M. (2011). mTORC1 and mTORC2 regulate, EMT, motility, and metastasis of colorectal cancer via RhoA and Rac1 signaling pathways. Cancer Res. 71, 3246-3256.
-
(2011)
Cancer Res
, vol.71
, pp. 3246-3256
-
-
Gulhati, P.1
Bowen, K.A.2
Liu, J.3
Stevens, P.D.4
Rychahou, P.G.5
Chen, M.6
Lee, E.Y.7
Weiss, H.L.8
O'Connor, K.L.9
Gao, T.10
Evers, B.M.11
-
14
-
-
33645325642
-
Crosstalk between the EGFR and other signalling pathways at the level of the global transcriptional corepressor Groucho/TLE
-
Hasson, P., and Paroush, Z. (2006). Crosstalk between the EGFR and other signalling pathways at the level of the global transcriptional corepressor Groucho/TLE. Br. J. Cancer 94, 771-775.
-
(2006)
Br. J. Cancer
, vol.94
, pp. 771-775
-
-
Hasson, P.1
Paroush, Z.2
-
15
-
-
33744980881
-
EphB receptors coordinate migration and proliferation in the intestinal stem cell niche
-
Holmberg, J., Genander, M., Halford, M. M., Annerén, C., Sondell, M., Chumley, M. J., Silvany, R. E., Henkemeyer, M., and Frisén, J. (2006). EphB receptors coordinate migration and proliferation in the intestinal stem cell niche. Cell 125, 1151-1163.
-
(2006)
Cell
, vol.125
, pp. 1151-1163
-
-
Holmberg, J.1
Genander, M.2
Halford, M.M.3
Annerén, C.4
Sondell, M.5
Chumley, M.J.6
Silvany, R.E.7
Henkemeyer, M.8
Frisén, J.9
-
16
-
-
84858288644
-
EpithelialMesenchymal Transition in tumor microenvironment
-
Jing, Y., Han, Z., Zhang, S., Liu, Y., and Wei, L. (2011). EpithelialMesenchymal Transition in tumor microenvironment. Cell Biosci. 1, 29.
-
(2011)
Cell Biosci
, vol.1
, pp. 29
-
-
Jing, Y.1
Han, Z.2
Zhang, S.3
Liu, Y.4
Wei, L.5
-
17
-
-
79953223688
-
EphrinB1 interacts with the transcriptional co-repressor Groucho/xTLE4
-
Kamata, T., Bong, Y.-S., Mood, K. Kamata, T., Bong, Y.-S., Mood, K. Park, M.J., Nishanian, T.G., and Lee, H.-S. (2011). EphrinB1 interacts with the transcriptional co-repressor Groucho/xTLE4. BMB Rep. 44, 199-204.
-
(2011)
BMB Rep
, vol.44
, pp. 199-204
-
-
Kamata, T.1
Bong, Y.-S.2
Mood, K.3
Kamata, T.4
Bong, Y.-S.5
Mood, K.6
Park, M.J.7
Nishanian, T.G.8
Lee, H.-S.9
-
18
-
-
0036841684
-
PI-3 kinase activity is required for epithelialmesenchymal transformation during palate fusion
-
Kang, P., and Svoboda, K.K.H. (2002). PI-3 kinase activity is required for epithelialmesenchymal transformation during palate fusion. Dev. Dyn. 225, 316-321.
-
(2002)
Dev. Dyn
, vol.225
, pp. 316-321
-
-
Kang, P.1
Svoboda, K.K.H.2
-
19
-
-
29544441080
-
Epithelial-mesenchymal transformation during craniofacial development
-
Kang, P.,andSvoboda, K.K.H. (2005). Epithelial-mesenchymal transformation during craniofacial development. J. Dent. Res. 84, 678-690.
-
(2005)
J. Dent. Res
, vol.84
, pp. 678-690
-
-
Kang, P.1
Svoboda, K.K.H.2
-
20
-
-
0036303033
-
Mechanisms and functions of Eph and ephrin signalling
-
Kullander, K., and Klein, R. (2002). Mechanisms and functions of Eph and ephrin signalling. Nat. Rev. Mol. Cell Biol. 3, 475-486.
-
(2002)
Nat. Rev. Mol. Cell Biol
, vol.3
, pp. 475-486
-
-
Kullander, K.1
Klein, R.2
-
21
-
-
0342635464
-
Medial edge epithelial cell fate during palatal fusion
-
Martínez-Alvarez, C., Tudela, C., PérezMiguelsanz, J., O'Kane, S., Puerta, J., and Ferguson, M. W. (2000). Medial edge epithelial cell fate during palatal fusion. Dev. Biol. 220, 343-357.
-
(2000)
Dev. Biol
, vol.220
, pp. 343-357
-
-
Martínez-Alvarez, C.1
Tudela, C.2
PérezMiguelsanz, J.3
O'Kane, S.4
Puerta, J.5
Ferguson, M.W.6
-
22
-
-
0041669478
-
'Eph'ective signaling: forward, reverse and crosstalk
-
Murai, K. K., and Pasquale, E. B. (2003). 'Eph'ective signaling: forward, reverse and crosstalk. J. Cell Sci. 116, 2823-2832.
-
(2003)
J. Cell Sci
, vol.116
, pp. 2823-2832
-
-
Murai, K.K.1
Pasquale, E.B.2
-
23
-
-
54549125814
-
Palatal seam disintegration: to die or not to die? that is no longer the question
-
Nawshad, A. (2008). Palatal seam disintegration: to die or not to die? that is no longer the question. Dev. Dyn. 237, 2643-2656.
-
(2008)
Dev. Dyn
, vol.237
, pp. 2643-2656
-
-
Nawshad, A.1
-
24
-
-
0028972869
-
Transforming growth factorbeta 3 is required for secondary palate fusion
-
Proetzel, G., Pawlowski, S. A., Wiles, M. V., Yin, M., Boivin, G. P., Howles, P. N., Ding, J., Ferguson, M. W., and Doetschman, T. (1995). Transforming growth factorbeta 3 is required for secondary palate fusion. Nat. Genet. 11, 409-414.
-
(1995)
Nat. Genet
, vol.11
, pp. 409-414
-
-
Proetzel, G.1
Pawlowski, S.A.2
Wiles, M.V.3
Yin, M.4
Boivin, G.P.5
Howles, P.N.6
Ding, J.7
Ferguson, M.W.8
Doetschman, T.9
-
25
-
-
84855478714
-
Normal and disease-related biological functions of Twist1 and underlying molecular mechanisms
-
Qin, Q., Xu, Y., He, T., Qin, C., and Xu, J. (2012). Normal and disease-related biological functions of Twist1 and underlying molecular mechanisms. Cell Res. 22, 90-106.
-
(2012)
Cell Res
, vol.22
, pp. 90-106
-
-
Qin, Q.1
Xu, Y.2
He, T.3
Qin, C.4
Xu, J.5
-
26
-
-
59849101798
-
EphB2 and EphB3 forward signalling are required for palate development
-
Risley, M., Garrod, D., Henkemeyer, M., and Mclean, W. (2009). EphB2 and EphB3 forward signalling are required for palate development. Mech. Dev. 126, 230-239.
-
(2009)
Mech. Dev
, vol.126
, pp. 230-239
-
-
Risley, M.1
Garrod, D.2
Henkemeyer, M.3
Mclean, W.4
-
27
-
-
78751534700
-
Ephrin reverse signaling controls palate fusion via a PI3 kinasedependent mechanism
-
San Miguel, S., Serrano, M. J., Sachar San Miguel, S., Serrano, M. J., Sachar A., Henkemeyer, M., Svoboda, K. K. H., and Benson, M. D. (2011). Ephrin reverse signaling controls palate fusion via a PI3 kinasedependent mechanism. Dev. Dyn. 240, 357-364.
-
(2011)
Dev. Dyn
, vol.240
, pp. 357-364
-
-
San Miguel, S.1
Serrano, M.J.2
Sachar San Miguel, S.3
Serrano, M.J.4
Sachar, A.5
Henkemeyer, M.6
Svoboda, K.K.H.7
Benson, M.D.8
-
28
-
-
0026353631
-
Molecular and morphologic changes during the epithelial-mesenchymal transformation of palatal shelf medial edge epithelium in vitro
-
Shuler, C. F., Guo, Y., Majumder, A., and Luo, R. Y. (1991). Molecular and morphologic changes during the epithelial-mesenchymal transformation of palatal shelf medial edge epithelium in vitro. Int. J. Dev. Biol. 35, 463-472.
-
(1991)
Int. J. Dev. Biol
, vol.35
, pp. 463-472
-
-
Shuler, C.F.1
Guo, Y.2
Majumder, A.3
Luo, R.Y.4
-
29
-
-
0026481963
-
Medial edge epithelium fate traced by cell lineage analysis during epithelialmesenchymal transformation in vivo
-
Shuler, C. F., Halpern, D. E., Guo, Y., and Sank, A. C. (1992). Medial edge epithelium fate traced by cell lineage analysis during epithelialmesenchymal transformation in vivo. Dev. Biol. 154, 318-330.
-
(1992)
Dev. Biol
, vol.154
, pp. 318-330
-
-
Shuler, C.F.1
Halpern, D.E.2
Guo, Y.3
Sank, A.C.4
-
30
-
-
0031594269
-
TGFbeta3 promotes transformation of chicken palate medial edge epithelium to mesenchyme in vitro
-
Sun, D., Vanderburg, C. R., Odierna, G. S., and Hay, E. D. (1998). TGFbeta3 promotes transformation of chicken palate medial edge epithelium to mesenchyme in vitro. Development 125, 95-105.
-
(1998)
Development
, vol.125
, pp. 95-105
-
-
Sun, D.1
Vanderburg, C.R.2
Odierna, G.S.3
Hay, E.D.4
-
31
-
-
0032823873
-
Pathogenesis of cleft palate in TGF-beta3 knockout mice
-
Taya, Y., O'Kane, S.,andFerguson, M. W. (1999). Pathogenesis of cleft palate in TGF-beta3 knockout mice. Development 126, 3869-3879.
-
(1999)
Development
, vol.126
, pp. 3869-3879
-
-
Taya, Y.1
O'Kane, S.2
Ferguson, M.W.3
-
32
-
-
0036595629
-
Epithelialmesenchymal transitions in tumor progression
-
Thiery, J. P. (2002). Epithelialmesenchymal transitions in tumor progression. Nat. Rev. Cancer 2, 442-454.
-
(2002)
Nat. Rev. Cancer
, vol.2
, pp. 442-454
-
-
Thiery, J.P.1
-
33
-
-
2942560339
-
Mutations of ephrin-B1 (EFNB1), a marker of tissue boundary formation, cause craniofrontonasal syndrome
-
Twigg, S. R. F., Kan, R., Babbs, C., Bochukova, E. G., Robertson, S. P., Wall, S. A., Morriss-Kay, G. M., and Wilkie, A. O. M. (2004). Mutations of ephrin-B1 (EFNB1), a marker of tissue boundary formation, cause craniofrontonasal syndrome. Proc. Natl. Acad. Sci. U.S.A. 101, 8652-8657.
-
(2004)
Proc. Natl. Acad. Sci. U.S.A
, vol.101
, pp. 8652-8657
-
-
Twigg, S.R.F.1
Kan, R.2
Babbs, C.3
Bochukova, E.G.4
Robertson, S.P.5
Wall, S.A.6
Morriss-Kay, G.M.7
Wilkie, A.O.M.8
-
34
-
-
22844439789
-
Twenty-six novel EFNB1 mutations in familial and sporadic craniofrontonasal syndrome (CFNS)
-
Wieland, I., Reardon, W., Jakubiczka, S., Franco, B., Kress, W., VincentDelorme, C., Thierry, P., Edwards, M., König, R., Rusu, C., Schweiger S., Thompson, E., Tinschert, S., Stewart, F., and Wieacker, P. (2005). Twenty-six novel EFNB1 mutations in familial and sporadic craniofrontonasal syndrome (CFNS). Hum. Mutat. 26, 113-118.
-
(2005)
Hum. Mutat
, vol.26
, pp. 113-118
-
-
Wieland, I.1
Reardon, W.2
Jakubiczka, S.3
Franco, B.4
Kress, W.5
VincentDelorme, C.6
Thierry, P.7
Edwards, M.8
König, R.9
Rusu, C.10
Schweiger, S.11
Thompson, E.12
Tinschert, S.13
Stewart, F.14
Wieacker, P.15
-
35
-
-
2442674220
-
Zinc transporter LIVI controls epithelial-mesenchymal transition in zebrafish gastrula organizer
-
Yamashita, S., Miyagi, C., Fukada, T., Kagara, N., Che, Y.-S., and Hirano, T. (2004). Zinc transporter LIVI controls epithelial-mesenchymal transition in zebrafish gastrula organizer. Nature 429, 298-302.
-
(2004)
Nature
, vol.429
, pp. 298-302
-
-
Yamashita, S.1
Miyagi, C.2
Fukada, T.3
Kagara, N.4
Che, Y.-S.5
Hirano, T.6
-
36
-
-
0033968596
-
Serine phosphorylation and maximal activation of STAT3 during CNTF signaling is mediated by the rapamycin target mTOR
-
Yokogami, K., Wakisaka, S., Avruch, J., and Reeves, S. A. (2000). Serine phosphorylation and maximal activation of STAT3 during CNTF signaling is mediated by the rapamycin target mTOR. Curr. Biol. 10, 47-50.
-
(2000)
Curr. Biol
, vol.10
, pp. 47-50
-
-
Yokogami, K.1
Wakisaka, S.2
Avruch, J.3
Reeves, S.A.4
-
37
-
-
84861345772
-
Hyperactive EGF receptor, Jaks and Stat3 signaling promote enhanced colony-forming ability, motility and migration of cisplatin-resistant ovarian cancer cells
-
Yue, P., Zhang, X., Paladino, D., Sengupta, B., Ahmad, S., Holloway, R. W., Ingersoll, S. B., and Turkson, J. (2012). Hyperactive EGF receptor, Jaks and Stat3 signaling promote enhanced colony-forming ability, motility and migration of cisplatin-resistant ovarian cancer cells. Oncogene 31, 2309-2322.
-
(2012)
Oncogene
, vol.31
, pp. 2309-2322
-
-
Yue, P.1
Zhang, X.2
Paladino, D.3
Sengupta, B.4
Ahmad, S.5
Holloway, R.W.6
Ingersoll, S.B.7
Turkson, J.8
-
38
-
-
54549086654
-
The role of twist during palate development
-
Yu, W., Kamara, H., and Svoboda, K. K. H. (2008). The role of twist during palate development. Dev. Dyn. 237, 2716-2725.
-
(2008)
Dev. Dyn
, vol.237
, pp. 2716-2725
-
-
Yu, W.1
Kamara, H.2
Svoboda, K.K.H.3
-
39
-
-
66149112185
-
Regulation of epithelialmesenchymal transition in palatal fusion
-
Yu, W., Ruest, L.-B., and Svoboda, K. K. H. (2009). Regulation of epithelialmesenchymal transition in palatal fusion. Exp. Biol. Med. (Maywood) 234, 483-491.
-
(2009)
Exp. Biol. Med. (Maywood)
, vol.234
, pp. 483-491
-
-
Yu, W.1
Ruest, L.-B.2
Svoboda, K.K.H.3
-
40
-
-
36048963331
-
Activation of the PTEN/mTOR/STAT3 pathway in breast cancer stem-like cells is required for viability and maintenance
-
Zhou, J., Wulfkuhle, J., Zhang, H., Gu Zhou, J., Wulfkuhle, J., Zhang, H., Gu P., Yang, Y., Deng, J., Margolick, J. B., Liotta, L. A., Petricoin, E., and Zhang, Y. (2007). Activation of the PTEN/mTOR/STAT3 pathway in breast cancer stem-like cells is required for viability and maintenance. Proc. Natl. Acad. Sci. U.S.A. 104, 16158-16163.
-
(2007)
Proc. Natl. Acad. Sci. U.S.A
, vol.104
, pp. 16158-16163
-
-
Zhou, J.1
Wulfkuhle, J.2
Zhang, H.3
Gu Zhou, J.4
Wulfkuhle, J.5
Zhang, H.6
Gu, P.7
Yang, Y.8
Deng, J.9
Margolick, J.B.10
Liotta, L.A.11
Petricoin, E.12
Zhang, Y.13
|