-
1
-
-
38849137768
-
A beta-catenin gradient links the clock and wavefront systems in mouse embryo segmentation
-
Aulehla, A., Wiegraebe, W., Baubet, V., Wahl, M. B., Deng, C., Taketo, M., Lewandoski, M. and Pourquie, O. (2007). A beta-catenin gradient links the clock and wavefront systems in mouse embryo segmentation. Nat. Cell Biol. 10, 181-193.
-
(2007)
Nat. Cell Biol
, vol.10
, pp. 181-193
-
-
Aulehla, A.1
Wiegraebe, W.2
Baubet, V.3
Wahl, M.B.4
Deng, C.5
Taketo, M.6
Lewandoski, M.7
Pourquie, O.8
-
2
-
-
0035887251
-
Dynamic expression and essential functions of Hes7 in somite segmentation
-
Bessho, Y., Sakata, R., Komatsu, S., Shiota, K., Yamada, S. and Kageyama, R. (2001). Dynamic expression and essential functions of Hes7 in somite segmentation. Genes Dev. 15, 2642-2647.
-
(2001)
Genes Dev
, vol.15
, pp. 2642-2647
-
-
Bessho, Y.1
Sakata, R.2
Komatsu, S.3
Shiota, K.4
Yamada, S.5
Kageyama, R.6
-
3
-
-
0038046204
-
Periodic repression by the bHLH factor Hes7 is an essential mechanism for the somite segmentation clock
-
Bessho, Y., Hirata, H., Masamizu, Y. and Kageyama, R. (2003). Periodic repression by the bHLH factor Hes7 is an essential mechanism for the somite segmentation clock. Genes Dev. 17, 1451-1456.
-
(2003)
Genes Dev
, vol.17
, pp. 1451-1456
-
-
Bessho, Y.1
Hirata, H.2
Masamizu, Y.3
Kageyama, R.4
-
4
-
-
34249693694
-
Ripply2 is essential for precise somite formation during mouse early development
-
Chan, T., Kondow, A., Hosoya, A., Hitachi, K., Yukita, A., Okabayashi, K., Nakamura, H., Ozawa, H., Kiyonari, H., Michiue, T. et al. (2007). Ripply2 is essential for precise somite formation during mouse early development. FEBS Lett. 581, 2691-2696.
-
(2007)
FEBS Lett
, vol.581
, pp. 2691-2696
-
-
Chan, T.1
Kondow, A.2
Hosoya, A.3
Hitachi, K.4
Yukita, A.5
Okabayashi, K.6
Nakamura, H.7
Ozawa, H.8
Kiyonari, H.9
Michiue, T.10
-
5
-
-
23844468774
-
Control of the segmentation process by graded MAPK/ERK activation in the chick embryo
-
Delfini, M. C., Dubrulle, J., Malapert, P., Chal, J. and Pourquie, O. (2005). Control of the segmentation process by graded MAPK/ERK activation in the chick embryo. Proc. Natl. Acad. Sci. USA 102, 11343-11348.
-
(2005)
Proc. Natl. Acad. Sci. USA
, vol.102
, pp. 11343-11348
-
-
Delfini, M.C.1
Dubrulle, J.2
Malapert, P.3
Chal, J.4
Pourquie, O.5
-
6
-
-
38849171709
-
Wnt3a/β-catenin signaling controls posterior body development by coordinating mesoderm formation and segmentation
-
Dunty, W. C., Jr, Biris, K. K., Chalamalasetty, R. B., Taketo, M. M., Lewandoski, M. and Yamaguchi, T. P. (2008). Wnt3a/β-catenin signaling controls posterior body development by coordinating mesoderm formation and segmentation. Development 135, 85-94.
-
(2008)
Development
, vol.135
, pp. 85-94
-
-
Dunty Jr, W.C.1
Biris, K.K.2
Chalamalasetty, R.B.3
Taketo, M.M.4
Lewandoski, M.5
Yamaguchi, T.P.6
-
7
-
-
8644219672
-
LEF1-mediated regulation of Delta-like1 links Wnt and Notch signaling in somitogenesis
-
Galceran, J., Sustmann, C., Hsu, S. C., Folberth, S. and Grosschedl, R. (2004). LEF1-mediated regulation of Delta-like1 links Wnt and Notch signaling in somitogenesis. Genes Dev. 18, 2718-2723.
-
(2004)
Genes Dev
, vol.18
, pp. 2718-2723
-
-
Galceran, J.1
Sustmann, C.2
Hsu, S.C.3
Folberth, S.4
Grosschedl, R.5
-
8
-
-
37849051890
-
Tbx6, Thylacine1, and E47 synergistically activate bowline expression in Xenopus somitogenesis
-
Hitachi, K., Kondow, A., Danno, H., Inui, M., Uchiyama, H. and Asashima, M. (2007). Tbx6, Thylacine1, and E47 synergistically activate bowline expression in Xenopus somitogenesis. Dev. Biol. 313, 816-828.
-
(2007)
Dev. Biol
, vol.313
, pp. 816-828
-
-
Hitachi, K.1
Kondow, A.2
Danno, H.3
Inui, M.4
Uchiyama, H.5
Asashima, M.6
-
9
-
-
8644290897
-
WNT signaling, in synergy with T/TBX6, controls Notch signaling by regulating Dll1 expression in the presomitic mesoderm of mouse embryos
-
Hofmann, M., Schuster-Gossler, K., Watabe-Rudolph, M., Aulehla, A., Herrmann, B. G. and Gossler, A. (2004). WNT signaling, in synergy with T/TBX6, controls Notch signaling by regulating Dll1 expression in the presomitic mesoderm of mouse embryos. Genes Dev. 18, 2712-2717.
-
(2004)
Genes Dev
, vol.18
, pp. 2712-2717
-
-
Hofmann, M.1
Schuster-Gossler, K.2
Watabe-Rudolph, M.3
Aulehla, A.4
Herrmann, B.G.5
Gossler, A.6
-
10
-
-
17844390391
-
Analysis of Notch function in presomitic mesoderm suggests a gamma-secretase-independent role for presenilins in somite differentiation
-
Huppert, S. S., Ilagan, M. X., De Strooper, B. and Kopan, R. (2005). Analysis of Notch function in presomitic mesoderm suggests a gamma-secretase-independent role for presenilins in somite differentiation. Dev. Cell 8, 677-688.
-
(2005)
Dev. Cell
, vol.8
, pp. 677-688
-
-
Huppert, S.S.1
Ilagan, M.X.2
De Strooper, B.3
Kopan, R.4
-
11
-
-
0036333257
-
Onset of the segmentation clock in the chick embryo: Evidence for oscillations in the somite precursors in the primitive streak
-
Jouve, C., Iimura, T. and Pourquie, O. (2002). Onset of the segmentation clock in the chick embryo: evidence for oscillations in the somite precursors in the primitive streak. Development 129, 1107-1117.
-
(2002)
Development
, vol.129
, pp. 1107-1117
-
-
Jouve, C.1
Iimura, T.2
Pourquie, O.3
-
12
-
-
28444485341
-
Groucho-associated transcriptional repressor ripply1 is required for proper transition from the presomitic mesoderm to somites
-
Kawamura, A., Koshida, S., Hijikata, H., Ohbayashi, A., Kondoh, H. and Takada, S. (2005). Groucho-associated transcriptional repressor ripply1 is required for proper transition from the presomitic mesoderm to somites. Dev. Cell 9, 735-744.
-
(2005)
Dev. Cell
, vol.9
, pp. 735-744
-
-
Kawamura, A.1
Koshida, S.2
Hijikata, H.3
Ohbayashi, A.4
Kondoh, H.5
Takada, S.6
-
13
-
-
34250685784
-
Bowline mediates association of the transcriptional corepressor XGrg-4 with Tbx6 during somitogenesis in Xenopus
-
Kondow, A., Hitachi, K,, Okabayashi, K., Hayashi, N. and Asashima, M. (2007). Bowline mediates association of the transcriptional corepressor XGrg-4 with Tbx6 during somitogenesis in Xenopus. Biochem. Biophys. Res. Commun. 359, 959-964.
-
(2007)
Biochem. Biophys. Res. Commun
, vol.359
, pp. 959-964
-
-
Kondow, A.1
Hitachi, K.2
Okabayashi, K.3
Hayashi, N.4
Asashima, M.5
-
14
-
-
0442294191
-
Regulation of segmental patterning by retinoic acid signaling during Xenopus somitogenesis
-
Moreno, T. A. and Kintner, C. (2004). Regulation of segmental patterning by retinoic acid signaling during Xenopus somitogenesis. Dev. Cell 6, 205-218.
-
(2004)
Dev. Cell
, vol.6
, pp. 205-218
-
-
Moreno, T.A.1
Kintner, C.2
-
15
-
-
19644371990
-
The Mesp2 transcription factor establishes segmental borders by suppressing Notch activity
-
Morimoto, M., Takahashi, Y., Endo, M. and Saga, Y. (2005). The Mesp2 transcription factor establishes segmental borders by suppressing Notch activity. Nature 435, 354-359.
-
(2005)
Nature
, vol.435
, pp. 354-359
-
-
Morimoto, M.1
Takahashi, Y.2
Endo, M.3
Saga, Y.4
-
16
-
-
34248582613
-
The negative regulation of Mesp2 by mouse Ripply2 is required to establish the rostro-caudal patterning within a somite
-
Morimoto, M., Sasaki, N., Oginuma, M., Kiso, M., Igarashi, K., Aizaki, K., Kanno, J. and Saga, Y. (2007). The negative regulation of Mesp2 by mouse Ripply2 is required to establish the rostro-caudal patterning within a somite. Development 134, 1561-1569.
-
(2007)
Development
, vol.134
, pp. 1561-1569
-
-
Morimoto, M.1
Sasaki, N.2
Oginuma, M.3
Kiso, M.4
Igarashi, K.5
Aizaki, K.6
Kanno, J.7
Saga, Y.8
-
17
-
-
34547418278
-
The initiation and propagation of Hes7 oscillation are cooperatively regulated by Fgf and notch signaling in the somite segmentation clock
-
Niwa, Y., Masamizu, Y., Liu, T., Nakayama, R., Deng, C. X. and Kageyama, R. (2007). The initiation and propagation of Hes7 oscillation are cooperatively regulated by Fgf and notch signaling in the somite segmentation clock. Dev. Cell 13, 298-304.
-
(2007)
Dev. Cell
, vol.13
, pp. 298-304
-
-
Niwa, Y.1
Masamizu, Y.2
Liu, T.3
Nakayama, R.4
Deng, C.X.5
Kageyama, R.6
-
18
-
-
0034425701
-
Mesp2 initiates somite segmentation through the Notch signalling pathway
-
Takahashi, Y., Koizumi, K., Takagi, A., Kitajima, S., Inoue, T., Koseki, H. and Saga, Y. (2000). Mesp2 initiates somite segmentation through the Notch signalling pathway. Nat. Genet. 25, 390-396.
-
(2000)
Nat. Genet
, vol.25
, pp. 390-396
-
-
Takahashi, Y.1
Koizumi, K.2
Takagi, A.3
Kitajima, S.4
Inoue, T.5
Koseki, H.6
Saga, Y.7
-
19
-
-
37249044796
-
FGF signaling acts upstream of the NOTCH and WNT signaling pathways to control segmentation clock oscillations in mouse somitogenesis
-
Wahl, M. B., Deng, C., Lewandoski, M. and Pourquie, O. (2007). FGF signaling acts upstream of the NOTCH and WNT signaling pathways to control segmentation clock oscillations in mouse somitogenesis. Development 134, 4033-4041.
-
(2007)
Development
, vol.134
, pp. 4033-4041
-
-
Wahl, M.B.1
Deng, C.2
Lewandoski, M.3
Pourquie, O.4
-
20
-
-
23244457575
-
Dll1 is a downstream target of Tbx6 in the paraxial mesoderm
-
White, P. H. and Chapman, D. L. (2005). Dll1 is a downstream target of Tbx6 in the paraxial mesoderm. Genesis 42, 193-202.
-
(2005)
Genesis
, vol.42
, pp. 193-202
-
-
White, P.H.1
Chapman, D.L.2
-
21
-
-
34547629799
-
Expression of Msgn1 in the presomitic mesoderm is controlled by synergism of WNT signalling and Tbx6
-
Wittler, L., Shin, E. H., Grote, P., Kispert, A., Beckers, A., Gossler, A., Werber, M. and Herrmann, B. G. (2007). Expression of Msgn1 in the presomitic mesoderm is controlled by synergism of WNT signalling and Tbx6. EMBO Rep. 8, 784-789.
-
(2007)
EMBO Rep
, vol.8
, pp. 784-789
-
-
Wittler, L.1
Shin, E.H.2
Grote, P.3
Kispert, A.4
Beckers, A.5
Gossler, A.6
Werber, M.7
Herrmann, B.G.8
-
22
-
-
0036198340
-
Generation of Fgfr1 conditional knockout mice
-
Xu, X., Qiao, W., Li, C. and Deng, C. X. (2002). Generation of Fgfr1 conditional knockout mice. Genesis 32, 85-86.
-
(2002)
Genesis
, vol.32
, pp. 85-86
-
-
Xu, X.1
Qiao, W.2
Li, C.3
Deng, C.X.4
-
23
-
-
33644866845
-
Tbx6-mediated Notch signaling controls somite-specific Mesp2 expression
-
Yasuhiko, Y., Haraguchi, S., Kitajima, S., Takahashi, Y., Kanno, J. and Saga, Y. (2006). Tbx6-mediated Notch signaling controls somite-specific Mesp2 expression. Proc Natl. Acad. Sci. USA 103, 3651-3656.
-
(2006)
Proc Natl. Acad. Sci. USA
, vol.103
, pp. 3651-3656
-
-
Yasuhiko, Y.1
Haraguchi, S.2
Kitajima, S.3
Takahashi, Y.4
Kanno, J.5
Saga, Y.6
|