-
1
-
-
1542718647
-
A southpaw joins the roster: the role of the zebrafish nodal-related gene southpaw in cardiac LR asymmetry
-
Ahmad N., Long S., and Rebagliati M. A southpaw joins the roster: the role of the zebrafish nodal-related gene southpaw in cardiac LR asymmetry. Trends Cardiovasc. Med. 14 (2004) 43-49
-
(2004)
Trends Cardiovasc. Med.
, vol.14
, pp. 43-49
-
-
Ahmad, N.1
Long, S.2
Rebagliati, M.3
-
2
-
-
22144485903
-
Roles for fgf8 signaling in left-right patterning of the visceral organs and craniofacial skeleton
-
Albertson R.C., and Yelick P.C. Roles for fgf8 signaling in left-right patterning of the visceral organs and craniofacial skeleton. Dev. Biol. 283 (2005) 310-321
-
(2005)
Dev. Biol.
, vol.283
, pp. 310-321
-
-
Albertson, R.C.1
Yelick, P.C.2
-
3
-
-
1942477305
-
The T box transcription factor no tail in ciliated cells controls zebrafish left-right asymmetry
-
Amack J.D., and Yost H.J. The T box transcription factor no tail in ciliated cells controls zebrafish left-right asymmetry. Curr. Biol. 14 (2004) 685-690
-
(2004)
Curr. Biol.
, vol.14
, pp. 685-690
-
-
Amack, J.D.1
Yost, H.J.2
-
4
-
-
0032574824
-
Targeted disruption of fibroblast growth factor (FGF) receptor 2 suggests a role for FGF signaling in pregastrulation mammalian development
-
Arman E., Haffner-Krausz R., Chen Y., Heath J.K., and Lonai P. Targeted disruption of fibroblast growth factor (FGF) receptor 2 suggests a role for FGF signaling in pregastrulation mammalian development. Proc. Natl. Acad. Sci. U. S. A. 95 (1998) 5082-5087
-
(1998)
Proc. Natl. Acad. Sci. U. S. A.
, vol.95
, pp. 5082-5087
-
-
Arman, E.1
Haffner-Krausz, R.2
Chen, Y.3
Heath, J.K.4
Lonai, P.5
-
5
-
-
0033593571
-
Axis development and early asymmetry in mammals
-
Beddington R.S., and Robertson E.J. Axis development and early asymmetry in mammals. Cell 96 (1999) 195-209
-
(1999)
Cell
, vol.96
, pp. 195-209
-
-
Beddington, R.S.1
Robertson, E.J.2
-
6
-
-
0032796828
-
Regulation of midline development by antagonism of lefty and nodal signaling
-
Bisgrove B.W., Essner J.J., and Yost H.J. Regulation of midline development by antagonism of lefty and nodal signaling. Development 126 (1999) 3253-3262
-
(1999)
Development
, vol.126
, pp. 3253-3262
-
-
Bisgrove, B.W.1
Essner, J.J.2
Yost, H.J.3
-
7
-
-
0033832893
-
Multiple pathways in the midline regulate concordant brain, heart and gut left-right asymmetry
-
Bisgrove B.W., Essner J.J., and Yost H.J. Multiple pathways in the midline regulate concordant brain, heart and gut left-right asymmetry. Development 127 (2000) 3567-3579
-
(2000)
Development
, vol.127
, pp. 3567-3579
-
-
Bisgrove, B.W.1
Essner, J.J.2
Yost, H.J.3
-
8
-
-
27744436054
-
Polaris and Polycystin-2 in dorsal forerunner cells and Kupffer's vesicle are required for specification of the zebrafish left-right axis
-
Bisgrove B.W., Snner B.S., Emrazian A., and Yost H.J. Polaris and Polycystin-2 in dorsal forerunner cells and Kupffer's vesicle are required for specification of the zebrafish left-right axis. Dev. Biol. 287 (2005) 274-288
-
(2005)
Dev. Biol.
, vol.287
, pp. 274-288
-
-
Bisgrove, B.W.1
Snner, B.S.2
Emrazian, A.3
Yost, H.J.4
-
9
-
-
0033545655
-
FGF8 functions in the specification of the right body side of the chick
-
Boettger T., Wittler L., and Kessel M. FGF8 functions in the specification of the right body side of the chick. Curr. Biol. 9 (1999) 277-280
-
(1999)
Curr. Biol.
, vol.9
, pp. 277-280
-
-
Boettger, T.1
Wittler, L.2
Kessel, M.3
-
10
-
-
4344622095
-
The roles of Fgf4 and Fgf8 in limb bud initiation and outgrowth
-
Boulet A.M., Moon A.M., Arenkiel B.R., and Capecchi M.R. The roles of Fgf4 and Fgf8 in limb bud initiation and outgrowth. Dev. Biol. 273 (2004) 361-372
-
(2004)
Dev. Biol.
, vol.273
, pp. 361-372
-
-
Boulet, A.M.1
Moon, A.M.2
Arenkiel, B.R.3
Capecchi, M.R.4
-
11
-
-
0026285560
-
Development of handed body asymmetry in mammals
-
Brown N.A., McCarthy A., and Wolpert L. Development of handed body asymmetry in mammals. Ciba Found Symp. 162 (1991) 182-196
-
(1991)
Ciba Found Symp.
, vol.162
, pp. 182-196
-
-
Brown, N.A.1
McCarthy, A.2
Wolpert, L.3
-
12
-
-
0030700764
-
Left-right pattern of cardiac BMP4 may drive asymmetry of the heart in zebrafish
-
Chen JN., van Eeden FJ., Warren KS., Chin A., Nüsslein-Volhard C., Haffter P., and Fishman MC. Left-right pattern of cardiac BMP4 may drive asymmetry of the heart in zebrafish. Development 124 (1997) 4373-4382
-
(1997)
Development
, vol.124
, pp. 4373-4382
-
-
Chen, JN.1
van Eeden, FJ.2
Warren, KS.3
Chin, A.4
Nüsslein-Volhard, C.5
Haffter, P.6
Fishman, MC.7
-
13
-
-
34247560264
-
Zebrafish Bmp4 regulates left-right asymmetry at two distinct developmental time points
-
Chocron S., Verhoeven M.C., Rentzsch F., Hammerschmidt M., and Bakkers J. Zebrafish Bmp4 regulates left-right asymmetry at two distinct developmental time points. Dev. Biol. 305 (2007) 577-588
-
(2007)
Dev. Biol.
, vol.305
, pp. 577-588
-
-
Chocron, S.1
Verhoeven, M.C.2
Rentzsch, F.3
Hammerschmidt, M.4
Bakkers, J.5
-
14
-
-
0029928791
-
Skeletal overgrowth and deafness in mice lacking fibroblast growth factor receptor 3
-
Colvin J.S., Bohne B.A., Harding G.W., McEwen D.G., and Ornitz D.M. Skeletal overgrowth and deafness in mice lacking fibroblast growth factor receptor 3. Nat. Genet. 12 (1996) 390-397
-
(1996)
Nat. Genet.
, vol.12
, pp. 390-397
-
-
Colvin, J.S.1
Bohne, B.A.2
Harding, G.W.3
McEwen, D.G.4
Ornitz, D.M.5
-
15
-
-
1842636932
-
Reciprocal relationships between Fgf8 and neural crest cells in facial and forebrain development
-
Creuzet S., Schuler B., Couly G., and Le Douarin N.M. Reciprocal relationships between Fgf8 and neural crest cells in facial and forebrain development. Proc. Natl. Acad. Sci. U. S. A. 101 (2004) 4843-4847
-
(2004)
Proc. Natl. Acad. Sci. U. S. A.
, vol.101
, pp. 4843-4847
-
-
Creuzet, S.1
Schuler, B.2
Couly, G.3
Le Douarin, N.M.4
-
16
-
-
10344262560
-
An essential role for Fgfs in endoderm pouch formation influences later craniofacial skeletal patterning
-
Crump J.G., Maves L., Lawson N.D., Weinstein B.M., and Kimmel C.B. An essential role for Fgfs in endoderm pouch formation influences later craniofacial skeletal patterning. Development 131 (2004) 5703-5716
-
(2004)
Development
, vol.131
, pp. 5703-5716
-
-
Crump, J.G.1
Maves, L.2
Lawson, N.D.3
Weinstein, B.M.4
Kimmel, C.B.5
-
17
-
-
29744461931
-
FGF signaling is necessary for establishing gut tube domains along the anterior-posterior axis in vivo
-
Dessimoz J., Opoka R., Kordich J.J., Grapin-Botton A., and Wells J.M. FGF signaling is necessary for establishing gut tube domains along the anterior-posterior axis in vivo. Mech. Dev. 123 (2006) 42-55
-
(2006)
Mech. Dev.
, vol.123
, pp. 42-55
-
-
Dessimoz, J.1
Opoka, R.2
Kordich, J.J.3
Grapin-Botton, A.4
Wells, J.M.5
-
18
-
-
0031149883
-
Fibroblast growth factor receptor-1 (FGFR-1) is essential for normal neural tubes and limb development
-
Deng C., Bedford M., Li C., Xu X., Yang X., Dunmore J., and Leder P. Fibroblast growth factor receptor-1 (FGFR-1) is essential for normal neural tubes and limb development. Dev. Biol. 185 (1997) 42-54
-
(1997)
Dev. Biol.
, vol.185
, pp. 42-54
-
-
Deng, C.1
Bedford, M.2
Li, C.3
Xu, X.4
Yang, X.5
Dunmore, J.6
Leder, P.7
-
19
-
-
0034023068
-
Mesendoderm and left-right brain, heart and gut development are differentially regulated by pitx2 isoforms
-
Essner J.J., Branford W.W., Zhang J., and Yost HJ. Mesendoderm and left-right brain, heart and gut development are differentially regulated by pitx2 isoforms. Development 127 (2000) 1081-1093
-
(2000)
Development
, vol.127
, pp. 1081-1093
-
-
Essner, J.J.1
Branford, W.W.2
Zhang, J.3
Yost, HJ.4
-
20
-
-
0037019298
-
Conserved function for embryonic nodal cilia
-
Essner J.J., Vogan K.J., Wagner M.K., Tabin C.J., Yost H.J., and Brueckner M. Conserved function for embryonic nodal cilia. Nature 418 (2002) 37-38
-
(2002)
Nature
, vol.418
, pp. 37-38
-
-
Essner, J.J.1
Vogan, K.J.2
Wagner, M.K.3
Tabin, C.J.4
Yost, H.J.5
Brueckner, M.6
-
21
-
-
17244366458
-
Kupffer's vesicle is a ciliated organ of asymmetry in the zebrafish embryo that initiates left-right development of the brain, heart and gut
-
Essner J.J., Amack J.D., Nyholm M.K., Harris E.B., and Yost H.J. Kupffer's vesicle is a ciliated organ of asymmetry in the zebrafish embryo that initiates left-right development of the brain, heart and gut. Development 132 (2005) 1247-1260
-
(2005)
Development
, vol.132
, pp. 1247-1260
-
-
Essner, J.J.1
Amack, J.D.2
Nyholm, M.K.3
Harris, E.B.4
Yost, H.J.5
-
22
-
-
0037440454
-
Formation of the digestive system in zebrafish. I. Liver morphogenesis
-
Field H.A., Ober E.A., Roeser T., and Stainier D.Y. Formation of the digestive system in zebrafish. I. Liver morphogenesis. Dev. Biol. 253 (2003) 279-290
-
(2003)
Dev. Biol.
, vol.253
, pp. 279-290
-
-
Field, H.A.1
Ober, E.A.2
Roeser, T.3
Stainier, D.Y.4
-
23
-
-
0028910939
-
Requirement of FGF-4 for postimplantation mouse development
-
Feldman B., Poueymirou W., Papaioannou V.E., DeChiara T.M., and Goldfarb M. Requirement of FGF-4 for postimplantation mouse development. Science 267 (1995) 246-249
-
(1995)
Science
, vol.267
, pp. 246-249
-
-
Feldman, B.1
Poueymirou, W.2
Papaioannou, V.E.3
DeChiara, T.M.4
Goldfarb, M.5
-
24
-
-
0037195252
-
FGF8 acts as a right determinant during establishment of the left-right axis in the rabbit
-
Fischer A., Viebahn C., and Blum M. FGF8 acts as a right determinant during establishment of the left-right axis in the rabbit. Curr. Biol. 12 (2002) 1807-1816
-
(2002)
Curr. Biol.
, vol.12
, pp. 1807-1816
-
-
Fischer, A.1
Viebahn, C.2
Blum, M.3
-
25
-
-
0035879552
-
Role of asymmetric signals in left-right patterning in the mouse
-
Hamada H., Meno C., Saijoh Y., Adachi H., Yashiro K., Sakuma R., and Shiratori H. Role of asymmetric signals in left-right patterning in the mouse. Am. J. Med. Genet. 101 (2001) 324-327
-
(2001)
Am. J. Med. Genet.
, vol.101
, pp. 324-327
-
-
Hamada, H.1
Meno, C.2
Saijoh, Y.3
Adachi, H.4
Yashiro, K.5
Sakuma, R.6
Shiratori, H.7
-
27
-
-
0142147267
-
A cellular framework for gut-looping morphogenesis in zebrafish
-
Horne-Badovinac S., Rebagliati M., and Stainier D.Y. A cellular framework for gut-looping morphogenesis in zebrafish. Science 302 (2003) 662-665
-
(2003)
Science
, vol.302
, pp. 662-665
-
-
Horne-Badovinac, S.1
Rebagliati, M.2
Stainier, D.Y.3
-
28
-
-
0041857925
-
Germ-line transmission of a myocardium-specific GFP transgene reveals critical regulatory elements in the cardiac myosin light chain 2 promoter of zebrafish
-
Huang C.J., Tu C.T., Hsiao C.D., Hsieh F.J., and Tsai H.J. Germ-line transmission of a myocardium-specific GFP transgene reveals critical regulatory elements in the cardiac myosin light chain 2 promoter of zebrafish. Dev. Dyn. 228 (2003) 30-40
-
(2003)
Dev. Dyn.
, vol.228
, pp. 30-40
-
-
Huang, C.J.1
Tu, C.T.2
Hsiao, C.D.3
Hsieh, F.J.4
Tsai, H.J.5
-
29
-
-
36249024845
-
The zebrafish fgf family
-
Itoh N., and Konishi M. The zebrafish fgf family. Zebrafish 4 (2007) 179-186
-
(2007)
Zebrafish
, vol.4
, pp. 179-186
-
-
Itoh, N.1
Konishi, M.2
-
30
-
-
4744372082
-
Evolution of the Fgf and Fgfr gene families
-
Itoh N., and Ornitz D.M. Evolution of the Fgf and Fgfr gene families. Trends Genet. 20 (2004) 563-569
-
(2004)
Trends Genet.
, vol.20
, pp. 563-569
-
-
Itoh, N.1
Ornitz, D.M.2
-
31
-
-
38149134409
-
Functional evolutionary history of the mouse Fgf gene family
-
Itoh N., and Ornitz D.M. Functional evolutionary history of the mouse Fgf gene family. Dev. Dyn. 237 (2008) 18-27
-
(2008)
Dev. Dyn.
, vol.237
, pp. 18-27
-
-
Itoh, N.1
Ornitz, D.M.2
-
32
-
-
4444245791
-
Fgf signaling is required for zebrafish tooth development
-
Jackman W.R., Draper B.W., and Stock D.W. Fgf signaling is required for zebrafish tooth development. Dev. Biol. 274 (2004) 139-157
-
(2004)
Dev. Biol.
, vol.274
, pp. 139-157
-
-
Jackman, W.R.1
Draper, B.W.2
Stock, D.W.3
-
33
-
-
0029045033
-
Stages of embryonic development of the zebrafish
-
Kimmel C.B., Ballard W.W., Kimmel S.R., Ullmann B., and Schilling T.F. Stages of embryonic development of the zebrafish. Dev. Dyn. 203 (1995) 253-310
-
(1995)
Dev. Dyn.
, vol.203
, pp. 253-310
-
-
Kimmel, C.B.1
Ballard, W.W.2
Kimmel, S.R.3
Ullmann, B.4
Schilling, T.F.5
-
34
-
-
0035008102
-
Developmental analysis of ceruloplasmin gene and liver formation in zebrafish
-
Korzh S., Emelyanov A., and Korzh V. Developmental analysis of ceruloplasmin gene and liver formation in zebrafish. Mech. Dev. 103 (2001) 137-139
-
(2001)
Mech. Dev.
, vol.103
, pp. 137-139
-
-
Korzh, S.1
Emelyanov, A.2
Korzh, V.3
-
35
-
-
33845664887
-
FGF-4 regulates neural progenitor cell proliferation and neuronal differentiation
-
Kosaka N., Kodama M., Sasaki H., Yamamoto Y., Takeshita F., Takahama Y., Sakamoto H., Kato M., Terada M., and Ochiya T. FGF-4 regulates neural progenitor cell proliferation and neuronal differentiation. FASEB J. 20 (2006) 1484-1485
-
(2006)
FASEB J.
, vol.20
, pp. 1484-1485
-
-
Kosaka, N.1
Kodama, M.2
Sasaki, H.3
Yamamoto, Y.4
Takeshita, F.5
Takahama, Y.6
Sakamoto, H.7
Kato, M.8
Terada, M.9
Ochiya, T.10
-
36
-
-
0031747236
-
Initial anteroposterior pattern of the zebrafish central nervous system is determined by differential competence of the epiblast
-
Koshida S., Shinya M., Mizuno T., Kuroiwa A., and Takeda H. Initial anteroposterior pattern of the zebrafish central nervous system is determined by differential competence of the epiblast. Development 125 (1998) 1957-1966
-
(1998)
Development
, vol.125
, pp. 1957-1966
-
-
Koshida, S.1
Shinya, M.2
Mizuno, T.3
Kuroiwa, A.4
Takeda, H.5
-
37
-
-
18844393668
-
Cilia-driven fluid flow in the zebrafish pronephros, brain and Kupffer's vesicle is required for normal organogenesis
-
Kramer-Zucker A.G., Olale F., Haycraft C.J., Yoder B.K., Schier A.F., and Drummond A. Cilia-driven fluid flow in the zebrafish pronephros, brain and Kupffer's vesicle is required for normal organogenesis. Development 132 (2005) 1907-1921
-
(2005)
Development
, vol.132
, pp. 1907-1921
-
-
Kramer-Zucker, A.G.1
Olale, F.2
Haycraft, C.J.3
Yoder, B.K.4
Schier, A.F.5
Drummond, A.6
-
38
-
-
0031128033
-
Left-right asymmetry in vertebrate embryogenesis
-
Levin M. Left-right asymmetry in vertebrate embryogenesis. Bioessays 19 (1997) 287-296
-
(1997)
Bioessays
, vol.19
, pp. 287-296
-
-
Levin, M.1
-
39
-
-
9944241753
-
Left-right asymmetry in embryonic development: a comprehensive review
-
Levin M. Left-right asymmetry in embryonic development: a comprehensive review. Mech. Dev. 122 (2005) 3-25
-
(2005)
Mech. Dev.
, vol.122
, pp. 3-25
-
-
Levin, M.1
-
40
-
-
0034532127
-
Asymmetric nodal signaling in the zebrafish diencephalon positions the pineal organ
-
Liang J.O., Etheridge A., Hantsoo L., Rubinstein A.L., Nowak S.J., Izpisúa Belmonte J.C., and Halpern M.E. Asymmetric nodal signaling in the zebrafish diencephalon positions the pineal organ. Development 127 (2000) 5101-5112
-
(2000)
Development
, vol.127
, pp. 5101-5112
-
-
Liang, J.O.1
Etheridge, A.2
Hantsoo, L.3
Rubinstein, A.L.4
Nowak, S.J.5
Izpisúa Belmonte, J.C.6
Halpern, M.E.7
-
41
-
-
0037672533
-
The zebrafish nodal-related gene southpaw is required for visceral and diencephalic left-right asymmetry
-
Long S., Ahmad N., and Rebagliati M. The zebrafish nodal-related gene southpaw is required for visceral and diencephalic left-right asymmetry. Development 130 (2003) 2303-2316
-
(2003)
Development
, vol.130
, pp. 2303-2316
-
-
Long, S.1
Ahmad, N.2
Rebagliati, M.3
-
42
-
-
31644445191
-
Increasing Fgf4 expression in the mouse limb bud causes polysyndactyly and rescues the skeletal defects that result from loss of Fgf8 function
-
Lu P., Minowada G., and Martin G.R. Increasing Fgf4 expression in the mouse limb bud causes polysyndactyly and rescues the skeletal defects that result from loss of Fgf8 function. Development 133 (2006) 33-42
-
(2006)
Development
, vol.133
, pp. 33-42
-
-
Lu, P.1
Minowada, G.2
Martin, G.R.3
-
43
-
-
0036337492
-
Fgf3 and Fgf8 are required together for formation of the otic placode and vesicle
-
Maroon H., Walsche J., Mahmood R., Kiefer P., Dickson C., and Mason I. Fgf3 and Fgf8 are required together for formation of the otic placode and vesicle. Development 129 (2002) 2099-2108
-
(2002)
Development
, vol.129
, pp. 2099-2108
-
-
Maroon, H.1
Walsche, J.2
Mahmood, R.3
Kiefer, P.4
Dickson, C.5
Mason, I.6
-
44
-
-
0032493876
-
lefty-1 is required for left-right determination as a regulator of lefty-2 and nodal
-
Meno C., Shimono A., Saijoh Y., Yashiro K., Mochida K., Ohishi S., Noji S., Kondoh H., and Hamada H. lefty-1 is required for left-right determination as a regulator of lefty-2 and nodal. Cell 94 (1998) 287-297
-
(1998)
Cell
, vol.94
, pp. 287-297
-
-
Meno, C.1
Shimono, A.2
Saijoh, Y.3
Yashiro, K.4
Mochida, K.5
Ohishi, S.6
Noji, S.7
Kondoh, H.8
Hamada, H.9
-
45
-
-
0033575364
-
Differences in left-right axis pathways in mouse and chick: functions of FGF8 and SHH
-
Meyers E.N., and Martin G.R. Differences in left-right axis pathways in mouse and chick: functions of FGF8 and SHH. Science 285 (1999) 403-406
-
(1999)
Science
, vol.285
, pp. 403-406
-
-
Meyers, E.N.1
Martin, G.R.2
-
46
-
-
0031793625
-
Conservation of PDX-1 structure, function and expression in zebrafish
-
Milewski W.M., Duguay S.J., Chan S.J., and Steiner D.F. Conservation of PDX-1 structure, function and expression in zebrafish. Endocrinology 139 (1998) 1440-1449
-
(1998)
Endocrinology
, vol.139
, pp. 1440-1449
-
-
Milewski, W.M.1
Duguay, S.J.2
Chan, S.J.3
Steiner, D.F.4
-
47
-
-
28244468141
-
Fgf19 regulated by Hh signaling is required for zebrafish forebrain development
-
Miyake A., Nakayama Y., Konishi M., and Itoh N. Fgf19 regulated by Hh signaling is required for zebrafish forebrain development. Dev. Biol. 288 (2005) 259-275
-
(2005)
Dev. Biol.
, vol.288
, pp. 259-275
-
-
Miyake, A.1
Nakayama, Y.2
Konishi, M.3
Itoh, N.4
-
48
-
-
33749042595
-
Generation of robust left-right asymmetry in the mouse embryo requires a self-enhancement and lateral-inhibition system
-
Nakamura T., Mine N., Nakaguchi E., Mochizuki A., Yamamoto M., Yashiro K., Meno C., and Hamada H. Generation of robust left-right asymmetry in the mouse embryo requires a self-enhancement and lateral-inhibition system. Dev. Cell 11 (2006) 495-504
-
(2006)
Dev. Cell
, vol.11
, pp. 495-504
-
-
Nakamura, T.1
Mine, N.2
Nakaguchi, E.3
Mochizuki, A.4
Yamamoto, M.5
Yashiro, K.6
Meno, C.7
Hamada, H.8
-
49
-
-
37849028259
-
Fgf19 is required for zebrafish lens and retina development
-
Nakayama Y., Miyake A., Nakagawa Y., Mido T., Yoshikawa M., Konishi M., and Itoh N. Fgf19 is required for zebrafish lens and retina development. Dev. Biol. 313 (2008) 752-766
-
(2008)
Dev. Biol.
, vol.313
, pp. 752-766
-
-
Nakayama, Y.1
Miyake, A.2
Nakagawa, Y.3
Mido, T.4
Yoshikawa, M.5
Konishi, M.6
Itoh, N.7
-
50
-
-
0033780376
-
Effective targeted gene 'knockdown' in zebrafish
-
Nasevicius A., and Ekker S.C. Effective targeted gene 'knockdown' in zebrafish. Nat. Genet. 26 (2000) 216-220
-
(2000)
Nat. Genet.
, vol.26
, pp. 216-220
-
-
Nasevicius, A.1
Ekker, S.C.2
-
52
-
-
19344367605
-
Mechanism of nodal flow: a conserved symmetry breaking event in left-right axis determination
-
Okada Y., Takeda S., Tanaka Y., Belmonte J.C., and Hirokawa N. Mechanism of nodal flow: a conserved symmetry breaking event in left-right axis determination. Cell 121 (2005) 633-644
-
(2005)
Cell
, vol.121
, pp. 633-644
-
-
Okada, Y.1
Takeda, S.2
Tanaka, Y.3
Belmonte, J.C.4
Hirokawa, N.5
-
53
-
-
0031926506
-
Fgf8 is mutated in zebrafish acerebellar (ace) mutants and is required for maintenance of midbrain-hindbrain boundary development and somitogenesis
-
Reifers F., Böhli H., Walsh E.C., Crossley P.H., Stainier D.Y., and Brand M. Fgf8 is mutated in zebrafish acerebellar (ace) mutants and is required for maintenance of midbrain-hindbrain boundary development and somitogenesis. Development 125 (1998) 2381-2395
-
(1998)
Development
, vol.125
, pp. 2381-2395
-
-
Reifers, F.1
Böhli, H.2
Walsh, E.C.3
Crossley, P.H.4
Stainier, D.Y.5
Brand, M.6
-
54
-
-
0032490898
-
Pitx2 determines left-right asymmetry of internal organs in vertebrates
-
Ryan A.K., Blumberg B., Rodriguez-Esteban C., Yonei-Tamura S., Tamura K., Tsukui T., de la Peña J., Sabbagh W., Greenwald J., Choe S., Norris D.P., Robertson E.J., Evans R.M., Rosenfeld M.G., and Izpisúa Belmonte J.C. Pitx2 determines left-right asymmetry of internal organs in vertebrates. Nature 394 (1998) 545-551
-
(1998)
Nature
, vol.394
, pp. 545-551
-
-
Ryan, A.K.1
Blumberg, B.2
Rodriguez-Esteban, C.3
Yonei-Tamura, S.4
Tamura, K.5
Tsukui, T.6
de la Peña, J.7
Sabbagh, W.8
Greenwald, J.9
Choe, S.10
Norris, D.P.11
Robertson, E.J.12
Evans, R.M.13
Rosenfeld, M.G.14
Izpisúa Belmonte, J.C.15
-
55
-
-
34248597580
-
Zebrafish curly up encodes a Pkd2 ortholog that restricts left-side-specific expression of southpaw
-
Schottenfeld J., Sullivan-Brown J., and Burdine R.D. Zebrafish curly up encodes a Pkd2 ortholog that restricts left-side-specific expression of southpaw. Development 134 (2007) 1605-1615
-
(2007)
Development
, vol.134
, pp. 1605-1615
-
-
Schottenfeld, J.1
Sullivan-Brown, J.2
Burdine, R.D.3
-
56
-
-
33745612029
-
The left-right axis in the mouse: from origin to morphology
-
Shiratori H., and Hamada H. The left-right axis in the mouse: from origin to morphology. Development 133 (2006) 2095-2104
-
(2006)
Development
, vol.133
, pp. 2095-2104
-
-
Shiratori, H.1
Hamada, H.2
-
57
-
-
10644297212
-
Expression of the FGF receptor 2 gene (fgfr2) during embryogenesis in the zebrafish Danio rerio
-
Tonou-Fujimori N., Takahashi M., Onodera H., Kikuta H., Koshida S., Takeda H., and Yamasu K. Expression of the FGF receptor 2 gene (fgfr2) during embryogenesis in the zebrafish Danio rerio. Mech. Dev. 119S (2002) S173-S178
-
(2002)
Mech. Dev.
, vol.119 S
-
-
Tonou-Fujimori, N.1
Takahashi, M.2
Onodera, H.3
Kikuta, H.4
Koshida, S.5
Takeda, H.6
Yamasu, K.7
-
58
-
-
0344740955
-
Fgf signaling is required for formation of cartilage in the head
-
Walshe J., and Mason I. Fgf signaling is required for formation of cartilage in the head. Dev. Biol. 264 (2003) 522-536
-
(2003)
Dev. Biol.
, vol.264
, pp. 522-536
-
-
Walshe, J.1
Mason, I.2
-
60
-
-
0034685916
-
Elevated cholesterol metabolism and bile acid synthesis in mice lacking membrane tyrosine kinase receptor FGFR4
-
Yu C., Wang F., Kan M., Jin C., Jones R.B., Weinstein M., Deng C.X., and McKeehan W.L. Elevated cholesterol metabolism and bile acid synthesis in mice lacking membrane tyrosine kinase receptor FGFR4. J. Biol. Chem. 275 (2000) 15482-15489
-
(2000)
J. Biol. Chem.
, vol.275
, pp. 15482-15489
-
-
Yu, C.1
Wang, F.2
Kan, M.3
Jin, C.4
Jones, R.B.5
Weinstein, M.6
Deng, C.X.7
McKeehan, W.L.8
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