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ZFIN ID:
ZDB-MRPHLNO-050620-2
CITATIONS
(17 total)
Morpholino Name:
MO1-fn1a
Morpholino Symbol:
MO1-fn1a
Araya, C., Carmona-Fontaine, C., Clarke, J.D. (2016) ECM couples the convergence movements of mesoderm and neural plate during the early stages of neurulation. Developmental Dynamics : an official publication of the American Association of Anatomists. 245(5):580-9
Cheng, P., Andersen, P., Hassel, D., Kaynak, B.L., Limphong, P., Juergensen, L., Kwon, C., and Srivastava, D. (2013) Fibronectin mediates mesendodermal cell fate decisions. Development (Cambridge, England). 140(12):2587-2596
Gao, Y., Hu, B., Flores, R., Xie, H., Lin, F. (2022) Fibronectin and Integrin α5 play overlapping and independent roles in regulating the development of pharyngeal endoderm and cartilage. Developmental Biology. 489:122-133
Hisano, Y., Ota, S., Takada, S., and Kawahara, A. (2013) Functional cooperation of spns2 and fibronectin in cardiac and lower jaw development. Biology Open. 2(8):789-794
Hu, B., Gao, Y., Davies, L., Woo, S., Topczewski, J., Jessen, J.R., Lin, F. (2018) Glypican 4 and Mmp14 interact in regulating the migration of anterior endodermal cells by limiting extracellular matrix deposition. Development (Cambridge, England). 145(17):
Jülich, D., Geisler, R., Tübingen 2000 Screen Consortium, and Holley, S.A. (2005) Integrinalpha5 and Delta/Notch Signaling Have Complementary Spatiotemporal Requirements during Zebrafish Somitogenesis. Developmental Cell. 8(4):575-586
Jülich, D., Mould, A.P., Koper, E., and Holley, S.A. (2009) Control of extracellular matrix assembly along tissue boundaries via Integrin and Eph/Ephrin signaling. Development (Cambridge, England). 136(17):2913-2921
Latimer, A., and Jessen, J.R. (2010) Extracellular matrix assembly and organization during zebrafish gastrulation. Matrix biology : journal of the International Society for Matrix Biology. 29(2):89-96
Lin, C.Y., Huang, C.C., Wang, W.D., Hsiao, C.D., Cheng, C.F., Wu, Y.T., Lu, Y.F., and Hwang, S.P. (2013) Low temperature mitigates cardia bifida in zebrafish embryos. PLoS One. 8(7):e69788
Louie, K.W., Saera-Vila, A., Kish, P.E., Colacino, J.A., Kahana, A. (2017) Temporally distinct transcriptional regulation of myocyte dedifferentiation and Myofiber growth during muscle regeneration. BMC Genomics. 18:854
Love, A.M., Prince, D.J., Jessen, J.R. (2018) Vangl2-dependent regulation of membrane protrusions and directed migration requires a fibronectin extracellular matrix. Development (Cambridge, England). 145(22):
Mahabaleshwar, H., Asharani, P.V., Loo, T.Y., Koh, S.Y., Pitman, M.R., Kwok, S., Ma, J., Hu, B., Lin, F., Li Lok, X., Pitson, S.M., Saunders, T.E., Carney, T.J. (2022) Slit-Robo signalling establishes a Sphingosine-1-phosphate gradient to polarise fin mesenchyme. EMBO reports. 23(8):e54464
Naganathan, S.R., Popović, M., Oates, A.C. (2022) Left-right symmetry of zebrafish embryos requires somite surface tension. Nature. 605(7910):516-521
Prince, D.J., Jessen, J.R. (2019) Dorsal convergence of gastrula cells requires a Vangl2 and adhesion protein-dependent change in protrusive activity. Development (Cambridge, England). 146(22):
Rho, S.S., Kobayashi, I., Oguri-Nakamura, E., Ando, K., Fujiwara, M., Kamimura, N., Hirata, H., Iida, A., Iwai, Y., Mochizuki, N., Fukuhara, S. (2019) Rap1b Promotes Notch-Signal-Mediated Hematopoietic Stem Cell Development by Enhancing Integrin-Mediated Cell Adhesion. Developmental Cell. 49(5):681-696.e6
Snow, C.J., Peterson, M.T., Khalil, A., and Henry, C.A. (2008) Muscle development is disrupted in zebrafish embryos deficient for fibronectin. Developmental Dynamics : an official publication of the American Association of Anatomists. 237(9):2542-2553
Trinh, L.A., and Stainier, D.Y. (2004) Fibronectin Regulates Epithelial Organization during Myocardial Migration in Zebrafish. Developmental Cell. 6(3):371-382
Gao, Y., Hu, B., Flores, R., Xie, H., Lin, F. (2022) Fibronectin and Integrin α5 play overlapping and independent roles in regulating the development of pharyngeal endoderm and cartilage. Developmental Biology. 489:122-133
Mahabaleshwar, H., Asharani, P.V., Loo, T.Y., Koh, S.Y., Pitman, M.R., Kwok, S., Ma, J., Hu, B., Lin, F., Li Lok, X., Pitson, S.M., Saunders, T.E., Carney, T.J. (2022) Slit-Robo signalling establishes a Sphingosine-1-phosphate gradient to polarise fin mesenchyme. EMBO reports. 23(8):e54464
Naganathan, S.R., Popović, M., Oates, A.C. (2022) Left-right symmetry of zebrafish embryos requires somite surface tension. Nature. 605(7910):516-521
Prince, D.J., Jessen, J.R. (2019) Dorsal convergence of gastrula cells requires a Vangl2 and adhesion protein-dependent change in protrusive activity. Development (Cambridge, England). 146(22):
Rho, S.S., Kobayashi, I., Oguri-Nakamura, E., Ando, K., Fujiwara, M., Kamimura, N., Hirata, H., Iida, A., Iwai, Y., Mochizuki, N., Fukuhara, S. (2019) Rap1b Promotes Notch-Signal-Mediated Hematopoietic Stem Cell Development by Enhancing Integrin-Mediated Cell Adhesion. Developmental Cell. 49(5):681-696.e6
Hu, B., Gao, Y., Davies, L., Woo, S., Topczewski, J., Jessen, J.R., Lin, F. (2018) Glypican 4 and Mmp14 interact in regulating the migration of anterior endodermal cells by limiting extracellular matrix deposition. Development (Cambridge, England). 145(17):
Love, A.M., Prince, D.J., Jessen, J.R. (2018) Vangl2-dependent regulation of membrane protrusions and directed migration requires a fibronectin extracellular matrix. Development (Cambridge, England). 145(22):
Louie, K.W., Saera-Vila, A., Kish, P.E., Colacino, J.A., Kahana, A. (2017) Temporally distinct transcriptional regulation of myocyte dedifferentiation and Myofiber growth during muscle regeneration. BMC Genomics. 18:854
Araya, C., Carmona-Fontaine, C., Clarke, J.D. (2016) ECM couples the convergence movements of mesoderm and neural plate during the early stages of neurulation. Developmental Dynamics : an official publication of the American Association of Anatomists. 245(5):580-9
Cheng, P., Andersen, P., Hassel, D., Kaynak, B.L., Limphong, P., Juergensen, L., Kwon, C., and Srivastava, D. (2013) Fibronectin mediates mesendodermal cell fate decisions. Development (Cambridge, England). 140(12):2587-2596
Hisano, Y., Ota, S., Takada, S., and Kawahara, A. (2013) Functional cooperation of spns2 and fibronectin in cardiac and lower jaw development. Biology Open. 2(8):789-794
Lin, C.Y., Huang, C.C., Wang, W.D., Hsiao, C.D., Cheng, C.F., Wu, Y.T., Lu, Y.F., and Hwang, S.P. (2013) Low temperature mitigates cardia bifida in zebrafish embryos. PLoS One. 8(7):e69788
Latimer, A., and Jessen, J.R. (2010) Extracellular matrix assembly and organization during zebrafish gastrulation. Matrix biology : journal of the International Society for Matrix Biology. 29(2):89-96
Jülich, D., Mould, A.P., Koper, E., and Holley, S.A. (2009) Control of extracellular matrix assembly along tissue boundaries via Integrin and Eph/Ephrin signaling. Development (Cambridge, England). 136(17):2913-2921
Snow, C.J., Peterson, M.T., Khalil, A., and Henry, C.A. (2008) Muscle development is disrupted in zebrafish embryos deficient for fibronectin. Developmental Dynamics : an official publication of the American Association of Anatomists. 237(9):2542-2553
Jülich, D., Geisler, R., Tübingen 2000 Screen Consortium, and Holley, S.A. (2005) Integrinalpha5 and Delta/Notch Signaling Have Complementary Spatiotemporal Requirements during Zebrafish Somitogenesis. Developmental Cell. 8(4):575-586
Trinh, L.A., and Stainier, D.Y. (2004) Fibronectin Regulates Epithelial Organization during Myocardial Migration in Zebrafish. Developmental Cell. 6(3):371-382
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