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Volumn 232, Issue 3, 2005, Pages 685-694

Compartmentalized morphogenesis in epithelia: From cell to tissue shape

Author keywords

Actin; Adhesion; Epithelium; Intercalation; Junctions; Morphogenesis

Indexed keywords

ACTIN;

EID: 14644404292     PISSN: 10588388     EISSN: None     Source Type: Journal    
DOI: 10.1002/dvdy.20334     Document Type: Review
Times cited : (152)

References (85)
  • 1
    • 0037242462 scopus 로고    scopus 로고
    • Tube or not tube. Remodeling epithelial tissues by branching morphogenesis
    • Affolter M, Bellusci S, Itoh N, Shilo B, Thiery JP, Werb Z. 2003. Tube or not tube. Remodeling epithelial tissues by branching morphogenesis. Dev Cell 4:11-18.
    • (2003) Dev Cell , vol.4 , pp. 11-18
    • Affolter, M.1    Bellusci, S.2    Itoh, N.3    Shilo, B.4    Thiery, J.P.5    Werb, Z.6
  • 2
    • 0027062705 scopus 로고
    • Microfilaments, cell shape changes, and the formation of primary mesenchyme in sea urchin embryos
    • Anstrom JA. 1992. Microfilaments, cell shape changes, and the formation of primary mesenchyme in sea urchin embryos. J Exp Zool 264:312-322.
    • (1992) J Exp Zool , vol.264 , pp. 312-322
    • Anstrom, J.A.1
  • 3
    • 0033081407 scopus 로고    scopus 로고
    • The Rap1 GTPase functions as a regulator of morphogenesis in vivo
    • Asha H, de Ruiter ND, Wang MG, Hariharan IK. 1999. The Rap1 GTPase functions as a regulator of morphogenesis in vivo. EMBO J 18:605-615.
    • (1999) EMBO J , vol.18 , pp. 605-615
    • Asha, H.1    De Ruiter, N.D.2    Wang, M.G.3    Hariharan, I.K.4
  • 4
    • 0031443277 scopus 로고    scopus 로고
    • The Rho GTPase and a putative RhoGEF mediate a signaling pathway for the cell shape changes in Drosophila gastrulation
    • Barrett K, Leptin M, Settleman J. 1997. The Rho GTPase and a putative RhoGEF mediate a signaling pathway for the cell shape changes in Drosophila gastrulation. Cell 91:905-915.
    • (1997) Cell , vol.91 , pp. 905-915
    • Barrett, K.1    Leptin, M.2    Settleman, J.3
  • 5
    • 2942587231 scopus 로고    scopus 로고
    • Myosin-dependent junction remodelling controls planar cell intercalation and axis elongation
    • Bertet C, Sulak L, Lecuit T. 2004. Myosin-dependent junction remodelling controls planar cell intercalation and axis elongation. Nature 429:667-671.
    • (2004) Nature , vol.429 , pp. 667-671
    • Bertet, C.1    Sulak, L.2    Lecuit, T.3
  • 6
    • 0028282984 scopus 로고
    • Regulation of C-cadherin function during activin induced morphogenesis of Xenopus animal caps
    • Brieher WM, Gumbiner BM. 1994. Regulation of C-cadherin function during activin induced morphogenesis of Xenopus animal caps. J Cell Biol 126:519-527.
    • (1994) J Cell Biol , vol.126 , pp. 519-527
    • Brieher, W.M.1    Gumbiner, B.M.2
  • 8
    • 0033637328 scopus 로고    scopus 로고
    • Drosophila grain encodes a GATA transcription factor required for cell rearrangement during morphogenesis
    • Brown S, Castelli-Gair Hombria J. 2000. Drosophila grain encodes a GATA transcription factor required for cell rearrangement during morphogenesis. Development 127:4867-4876.
    • (2000) Development , vol.127 , pp. 4867-4876
    • Brown, S.1    Castelli-Gair Hombria, J.2
  • 9
    • 0037162283 scopus 로고    scopus 로고
    • Developmental compartments and planar polarity in Drosophila
    • Casal J, Struhl G, Lawrence PA. 2002. Developmental compartments and planar polarity in Drosophila. Curr Biol 12:1189-1198.
    • (2002) Curr Biol , vol.12 , pp. 1189-1198
    • Casal, J.1    Struhl, G.2    Lawrence, P.A.3
  • 10
    • 0347987855 scopus 로고    scopus 로고
    • A self-organizing system of represser gradients establishes segmental complexity in Drosophila
    • Clyde DE, Corado MS, Wu X, Pare A, Papatsenko D, Small S. 2003. A self-organizing system of represser gradients establishes segmental complexity in Drosophila. Nature 426:849-853.
    • (2003) Nature , vol.426 , pp. 849-853
    • Clyde, D.E.1    Corado, M.S.2    Wu, X.3    Pare, A.4    Papatsenko, D.5    Small, S.6
  • 11
    • 0035019860 scopus 로고    scopus 로고
    • Towards a cellular and molecular understanding of neurulation
    • Colas JF, Schoenwolf GC. 2001. Towards a cellular and molecular understanding of neurulation. Dev Dyn 221:117-145.
    • (2001) Dev Dyn , vol.221 , pp. 117-145
    • Colas, J.F.1    Schoenwolf, G.C.2
  • 12
    • 0031919709 scopus 로고    scopus 로고
    • Oriented cell divisions and cellular morphogenesis in the zebrafish gastrula and neurula: A time-lapse analysis
    • Concha ML, Adams RJ. 1998. Oriented cell divisions and cellular morphogenesis in the zebrafish gastrula and neurula: a time-lapse analysis. Development 125: 983-994.
    • (1998) Development , vol.125 , pp. 983-994
    • Concha, M.L.1    Adams, R.J.2
  • 13
    • 0025959080 scopus 로고
    • Apical cell shape changes during Drosophila imaginal leg disc elongation: A novel morphogenetic mechanism
    • Condic ML, Fristrom D, Fristrom JW. 1991. Apical cell shape changes during Drosophila imaginal leg disc elongation: a novel morphogenetic mechanism. Development 111:23-33.
    • (1991) Development , vol.111 , pp. 23-33
    • Condic, M.L.1    Fristrom, D.2    Fristrom, J.W.3
  • 14
    • 0028226299 scopus 로고
    • A putative cell signal encoded by the folded gastrulation gene coordinates cell shape changes during Drosophila gastrulation
    • Costa M, Wilson ET, Wieschaus E. 1994. A putative cell signal encoded by the folded gastrulation gene coordinates cell shape changes during Drosophila gastrulation. Cell 76:1075-1089.
    • (1994) Cell , vol.76 , pp. 1075-1089
    • Costa, M.1    Wilson, E.T.2    Wieschaus, E.3
  • 15
    • 0041468624 scopus 로고    scopus 로고
    • Activity and distribution of paxillin, focal adhesion kinase, and cadherin indicate cooperative roles during zebrafish morphogenesis
    • Crawford BD, Henry CA, Clason TA, Becker AL, Hille MB. 2003. Activity and distribution of paxillin, focal adhesion kinase, and cadherin indicate cooperative roles during zebrafish morphogenesis. Mol Biol Cell 14:3065-3081.
    • (2003) Mol Biol Cell , vol.14 , pp. 3065-3081
    • Crawford, B.D.1    Henry, C.A.2    Clason, T.A.3    Becker, A.L.4    Hille, M.B.5
  • 16
    • 0032739204 scopus 로고    scopus 로고
    • Neural tube closure in Xenopus laevis involves medial migration, directed protrusive activity, cell intercalation and convergent extension
    • Davidson LA, Keller RE. 1999. Neural tube closure in Xenopus laevis involves medial migration, directed protrusive activity, cell intercalation and convergent extension. Development 126:4547-4556.
    • (1999) Development , vol.126 , pp. 4547-4556
    • Davidson, L.A.1    Keller, R.E.2
  • 17
    • 0029005577 scopus 로고
    • How do sea urchins invaginate? Using biomechanics to distinguish between mechanisms of primary invagination
    • Davidson LA, Koehl MA, Keller R, Oster GF. 1995. How do sea urchins invaginate? Using biomechanics to distinguish between mechanisms of primary invagination. Development 121:2005-2018.
    • (1995) Development , vol.121 , pp. 2005-2018
    • Davidson, L.A.1    Koehl, M.A.2    Keller, R.3    Oster, G.F.4
  • 18
    • 0037324628 scopus 로고    scopus 로고
    • The tumor-suppressor and cell adhesion molecule Fat controls planar polarity via physical interactions with Atrophin, a transcriptional co-repressor
    • Fanto M, Clayton L, Meredith J, Hardiman K, Charroux B, Kerridge S, McNeill H. 2003. The tumor-suppressor and cell adhesion molecule Fat controls planar polarity via physical interactions with Atrophin, a transcriptional co-repressor. Development 130:763-774.
    • (2003) Development , vol.130 , pp. 763-774
    • Fanto, M.1    Clayton, L.2    Meredith, J.3    Hardiman, K.4    Charroux, B.5    Kerridge, S.6    McNeill, H.7
  • 19
    • 1242351972 scopus 로고    scopus 로고
    • Planar polarity from flies to vertebrates
    • Fanto M, McNeill H. 2004. Planar polarity from flies to vertebrates. J Cell Sci 117: 527-533.
    • (2004) J Cell Sci , vol.117 , pp. 527-533
    • Fanto, M.1    McNeill, H.2
  • 20
    • 0027424046 scopus 로고
    • Calcium regulation of neural fold formation: Visualization of the actin cytoskeleton in living chick embryos
    • Ferreira MC, Hilfer SR. 1993. Calcium regulation of neural fold formation: visualization of the actin cytoskeleton in living chick embryos. Dev Biol 159:427-440.
    • (1993) Dev Biol , vol.159 , pp. 427-440
    • Ferreira, M.C.1    Hilfer, S.R.2
  • 21
    • 0024235479 scopus 로고
    • The cellular basis of epithelial morphogenesis. A review
    • Fristrom D. 1988. The cellular basis of epithelial morphogenesis. A review. Tissue Cell 20:645-690.
    • (1988) Tissue Cell , vol.20 , pp. 645-690
    • Fristrom, D.1
  • 23
    • 3943102141 scopus 로고    scopus 로고
    • Planar cell polarity signalling controls cell division orientation during zebrafish gastrulation
    • Gong Y, Mo C, Fraser SE. 2004. Planar cell polarity signalling controls cell division orientation during zebrafish gastrulation. Nature 430:689-693.
    • (2004) Nature , vol.430 , pp. 689-693
    • Gong, Y.1    Mo, C.2    Fraser, S.E.3
  • 24
    • 0346403360 scopus 로고    scopus 로고
    • Shroom induces apical constriction and is required for hingepoint formation during neural tube closure
    • Haigo SL, Hildebrand JD, Harland RM, Wallingford JB. 2003. Shroom induces apical constriction and is required for hingepoint formation during neural tube closure. Curr Biol 13:2125-2137.
    • (2003) Curr Biol , vol.13 , pp. 2125-2137
    • Haigo, S.L.1    Hildebrand, J.D.2    Harland, R.M.3    Wallingford, J.B.4
  • 25
    • 0023915074 scopus 로고
    • The behaviour and function of bottle cells during gastrulation of Xenopus laevis
    • Hardin J, Keller R. 1988. The behaviour and function of bottle cells during gastrulation of Xenopus laevis. Development 103:211-230.
    • (1988) Development , vol.103 , pp. 211-230
    • Hardin, J.1    Keller, R.2
  • 28
    • 0033601076 scopus 로고    scopus 로고
    • Shroom, a PDZ domain-containing actin-binding protein, is required for neural tube morphogenesis in mice
    • Hildebrand JD, Soriano P. 1999. Shroom, a PDZ domain-containing actin-binding protein, is required for neural tube morphogenesis in mice. Cell 99:485-497.
    • (1999) Cell , vol.99 , pp. 485-497
    • Hildebrand, J.D.1    Soriano, P.2
  • 29
    • 0033214521 scopus 로고    scopus 로고
    • Study of the posterior spiracles of Drosophila as a model to understand the genetic and cellular mechanisms controlling morphogenesis
    • Hu N, Castelli-Gair J. 1999. Study of the posterior spiracles of Drosophila as a model to understand the genetic and cellular mechanisms controlling morphogenesis. Dev Biol 214:197-210.
    • (1999) Dev Biol , vol.214 , pp. 197-210
    • Hu, N.1    Castelli-Gair, J.2
  • 30
    • 0028218180 scopus 로고
    • Cell intercalation during Drosophila germband extension and its regulation by pair-rule segmentation genes
    • Irvine KD, Wieschaus E. 1994. Cell intercalation during Drosophila germband extension and its regulation by pair-rule segmentation genes. Development 120: 827-841.
    • (1994) Development , vol.120 , pp. 827-841
    • Irvine, K.D.1    Wieschaus, E.2
  • 31
    • 0035894527 scopus 로고    scopus 로고
    • Drumstick, bowl, and lines are required for patterning and cell rearrangement in the Drosophila embryonic hindgut
    • Iwaki DD, Johansen KA, Singer JB, Lengyel JA. 2001. drumstick, bowl, and lines are required for patterning and cell rearrangement in the Drosophila embryonic hindgut. Dev Biol 240:611-626.
    • (2001) Dev Biol , vol.240 , pp. 611-626
    • Iwaki, D.D.1    Johansen, K.A.2    Singer, J.B.3    Lengyel, J.A.4
  • 32
    • 0141505122 scopus 로고    scopus 로고
    • Epithelial tube morphogenesis during Drosophila tracheal development requires Piopio, a luminal ZP protein
    • Jazwinska A, Ribeiro C, Affolter M. 2003. Epithelial tube morphogenesis during Drosophila tracheal development requires Piopio, a luminal ZP protein. Nat Cell Biol 5:895-901.
    • (2003) Nat Cell Biol , vol.5 , pp. 895-901
    • Jazwinska, A.1    Ribeiro, C.2    Affolter, M.3
  • 34
    • 0037235515 scopus 로고    scopus 로고
    • Localized JAK/STAT signaling is required for oriented cell rearrangement in a tubular epithelium
    • Johansen KA, Iwaki DD, Lengyel JA. 2003. Localized JAK/STAT signaling is required for oriented cell rearrangement in a tubular epithelium. Development 130: 135-145.
    • (2003) Development , vol.130 , pp. 135-145
    • Johansen, K.A.1    Iwaki, D.D.2    Lengyel, J.A.3
  • 35
    • 0025903537 scopus 로고
    • Drosophila gastrulation: Analysis of cell shape changes in living embryos by three-dimensional fluorescence microscopy
    • Kam Z, Minden JS, Agard DA, Sedat JW, Leptin M. 1991. Drosophila gastrulation: analysis of cell shape changes in living embryos by three-dimensional fluorescence microscopy. Development 112:365-370.
    • (1991) Development , vol.112 , pp. 365-370
    • Kam, Z.1    Minden, J.S.2    Agard, D.A.3    Sedat, J.W.4    Leptin, M.5
  • 36
    • 0025899139 scopus 로고
    • The regulatory light chain of non-muscle myosin is encoded by spaghetti-squash, a gene required for cytokinesis in Drosophila
    • Karess RE, Chang XJ, Edwards KA, Kulkarni S, Aguilera I, Kiehart DP. 1991. The regulatory light chain of non-muscle myosin is encoded by spaghetti-squash, a gene required for cytokinesis in Drosophila. Cell 65:1177-1189.
    • (1991) Cell , vol.65 , pp. 1177-1189
    • Karess, R.E.1    Chang, X.J.2    Edwards, K.A.3    Kulkarni, S.4    Aguilera, I.5    Kiehart, D.P.6
  • 37
    • 0037032828 scopus 로고    scopus 로고
    • Shaping the vertebrate body plan by polarized embryonic cell movements
    • Keller R. 2002. Shaping the vertebrate body plan by polarized embryonic cell movements. Science 298:1950-1954.
    • (2002) Science , vol.298 , pp. 1950-1954
    • Keller, R.1
  • 39
    • 0026586983 scopus 로고
    • The cellular basis of the convergence and extension of the Xenopus neural plate
    • Keller R, Shih J, Sater A. 1992. The cellular basis of the convergence and extension of the Xenopus neural plate. Dev Dyn 193:199-217.
    • (1992) Dev Dyn , vol.193 , pp. 199-217
    • Keller, R.1    Shih, J.2    Sater, A.3
  • 40
    • 0019550339 scopus 로고
    • An experimental analysis of the role of bottle cells and the deep marginal zone in gastrulation of Xenopus laevis
    • Keller RE. 1981. An experimental analysis of the role of bottle cells and the deep marginal zone in gastrulation of Xenopus laevis. J Exp Zool 216:81-101.
    • (1981) J Exp Zool , vol.216 , pp. 81-101
    • Keller, R.E.1
  • 41
    • 0025021863 scopus 로고
    • Molecular genetic dissection of myosin heavy chain function
    • Kiehart DP. 1990. Molecular genetic dissection of myosin heavy chain function. Cell 60:347-350.
    • (1990) Cell , vol.60 , pp. 347-350
    • Kiehart, D.P.1
  • 42
    • 0037382333 scopus 로고    scopus 로고
    • The role of Ppt/Wnt5 in regulating cell shape and movement during zebrafish gastrulation
    • Kilian B, Mansukoski H, Barbosa FC, Ulrich F, Tada M, Heisenberg CP. 2003. The role of Ppt/Wnt5 in regulating cell shape and movement during zebrafish gastrulation. Mech Dev 120:467-476.
    • (2003) Mech Dev , vol.120 , pp. 467-476
    • Kilian, B.1    Mansukoski, H.2    Barbosa, F.C.3    Ulrich, F.4    Tada, M.5    Heisenberg, C.P.6
  • 43
    • 0037032804 scopus 로고    scopus 로고
    • Composition and formation of intercellular junctions in epithelial cells
    • Knust E, Bossinger O. 2002. Composition and formation of intercellular junctions in epithelial cells. Science 298:1955-1959.
    • (2002) Science , vol.298 , pp. 1955-1959
    • Knust, E.1    Bossinger, O.2
  • 44
    • 0032585579 scopus 로고    scopus 로고
    • Control of spindle orientation in Drosophila by the Par-3-related PDZ-domain protein Bazooka
    • Kuchinke U, Grawe F, Knust E. 1998. Control of spindle orientation in Drosophila by the Par-3-related PDZ-domain protein Bazooka. Curr Biol 8:1357-1365.
    • (1998) Curr Biol , vol.8 , pp. 1357-1365
    • Kuchinke, U.1    Grawe, F.2    Knust, E.3
  • 46
    • 0036333367 scopus 로고    scopus 로고
    • Towards a model of the organisation of planar polarity and pattern in the Drosophila abdomen
    • Lawrence PA, Casal J, Struhl G. 2002. Towards a model of the organisation of planar polarity and pattern in the Drosophila abdomen. Development 129:2749-2760.
    • (2002) Development , vol.129 , pp. 2749-2760
    • Lawrence, P.A.1    Casal, J.2    Struhl, G.3
  • 47
    • 0035283001 scopus 로고    scopus 로고
    • New insights into critical events of avian gastrulation
    • Lawson A, Schoenwolf GC. 2001. New insights into critical events of avian gastrulation. Anat Rec 262:238-252.
    • (2001) Anat Rec , vol.262 , pp. 238-252
    • Lawson, A.1    Schoenwolf, G.C.2
  • 48
    • 0036499810 scopus 로고    scopus 로고
    • It takes guts: The Drosophila hindgut as a model system for organogenesis
    • Lengyel JA, Iwaki DD. 2002. It takes guts: the Drosophila hindgut as a model system for organogenesis. Dev Biol 243:1-19.
    • (2002) Dev Biol , vol.243 , pp. 1-19
    • Lengyel, J.A.1    Iwaki, D.D.2
  • 49
    • 0025080165 scopus 로고
    • Cell shape changes during gastrulation in Drosophila
    • Leptin M, Grunewald B. 1990. Cell shape changes during gastrulation in Drosophila. Development 110:73-84.
    • (1990) Development , vol.110 , pp. 73-84
    • Leptin, M.1    Grunewald, B.2
  • 50
    • 0032715828 scopus 로고    scopus 로고
    • Organogenesis of the Caenorhabditis elegans intestine
    • Leung B, Hermann GJ, Priess JR. 1999. Organogenesis of the Caenorhabditis elegans intestine. Dev Biol 216:114-134.
    • (1999) Dev Biol , vol.216 , pp. 114-134
    • Leung, B.1    Hermann, G.J.2    Priess, J.R.3
  • 51
    • 0037018841 scopus 로고    scopus 로고
    • Zebrafish Rho kinase 2 acts downstream of Wnt11 to mediate cell polarity and effective convergence and extension movements
    • Marlow F, Topczewski J, Sepich D, Solnica-Krezel L. 2002. Zebrafish Rho kinase 2 acts downstream of Wnt11 to mediate cell polarity and effective convergence and extension movements. Curr Biol 12:876-884.
    • (2002) Curr Biol , vol.12 , pp. 876-884
    • Marlow, F.1    Topczewski, J.2    Sepich, D.3    Solnica-Krezel, L.4
  • 52
    • 4444240972 scopus 로고    scopus 로고
    • Interactions between Fat and Dachsous and the regulation of planar cell polarity in the Drosophila wing
    • Matakatsu H, Blair SS. 2004. Interactions between Fat and Dachsous and the regulation of planar cell polarity in the Drosophila wing. Development 131:3785-3794.
    • (2004) Development , vol.131 , pp. 3785-3794
    • Matakatsu, H.1    Blair, S.S.2
  • 53
    • 0031933226 scopus 로고    scopus 로고
    • Hyperactivation of the folded gastrulation pathway induces specific cell shape changes
    • Morize P, Christiansen AE, Costa M, Parks S, Wieschaus E. 1998. Hyperactivation of the folded gastrulation pathway induces specific cell shape changes. Development 125:589-597.
    • (1998) Development , vol.125 , pp. 589-597
    • Morize, P.1    Christiansen, A.E.2    Costa, M.3    Parks, S.4    Wieschaus, E.5
  • 54
    • 0036339868 scopus 로고    scopus 로고
    • Morphogenetic pattern formation during ascidian notochord formation is regulative and highly robust
    • Munro EM, Odell G. 2002a. Morphogenetic pattern formation during ascidian notochord formation is regulative and highly robust. Development 129:1-12.
    • (2002) Development , vol.129 , pp. 1-12
    • Munro, E.M.1    Odell, G.2
  • 55
    • 0036340214 scopus 로고    scopus 로고
    • Polarized basolateral cell motility underlies invagination and convergent extension of the ascidian notochord
    • Munro EM, Odell GM. 2002b. Polarized basolateral cell motility underlies invagination and convergent extension of the ascidian notochord. Development 129:13-24.
    • (2002) Development , vol.129 , pp. 13-24
    • Munro, E.M.1    Odell, G.M.2
  • 56
    • 0036716748 scopus 로고    scopus 로고
    • Convergence and extension in vertebrate gastrulae: Cell movements according to or in search of identity?
    • Myers DC, Sepich DS, Solnica-Krezel L. 2002. Convergence and extension in vertebrate gastrulae: cell movements according to or in search of identity? Trends Genet 18:447-455.
    • (2002) Trends Genet , vol.18 , pp. 447-455
    • Myers, D.C.1    Sepich, D.S.2    Solnica-Krezel, L.3
  • 57
    • 0036340040 scopus 로고    scopus 로고
    • Cell polarity and gastrulation in C. elegans
    • Nance J, Priess JR. 2002. Cell polarity and gastrulation in C. elegans. Development 129:387-397.
    • (2002) Development , vol.129 , pp. 387-397
    • Nance, J.1    Priess, J.R.2
  • 58
    • 0033772834 scopus 로고    scopus 로고
    • Use and properties of ROCK-specific inhibitor Y-27632
    • Narumiya S, Ishizaki T, Uehata M. 2000. Use and properties of ROCK-specific inhibitor Y-27632. Methods Enzymol 325: 273-284.
    • (2000) Methods Enzymol , vol.325 , pp. 273-284
    • Narumiya, S.1    Ishizaki, T.2    Uehata, M.3
  • 59
    • 0037452071 scopus 로고    scopus 로고
    • Adaptation of core mechanisms to generate cell polarity
    • Nelson WJ. 2003. Adaptation of core mechanisms to generate cell polarity. Nature 422:766-774.
    • (2003) Nature , vol.422 , pp. 766-774
    • Nelson, W.J.1
  • 60
    • 3142659600 scopus 로고    scopus 로고
    • Antero-posterior tissue polarity links mesoderm convergent extension to axial patterning
    • Ninomiya H, Elinson RP, Winklbauer R. 2004. Antero-posterior tissue polarity links mesoderm convergent extension to axial patterning. Nature 430:364-367.
    • (2004) Nature , vol.430 , pp. 364-367
    • Ninomiya, H.1    Elinson, R.P.2    Winklbauer, R.3
  • 61
    • 0026068650 scopus 로고
    • The Drosophila gastrulation gene concertina encodes a G alpha-like protein
    • Parks S, Wieschaus E. 1991. The Drosophila gastrulation gene concertina encodes a G alpha-like protein. Cell 64:447-458.
    • (1991) Cell , vol.64 , pp. 447-458
    • Parks, S.1    Wieschaus, E.2
  • 62
    • 0035141027 scopus 로고    scopus 로고
    • Dm-PAR-6 directs epithelial polarity and asymmetric cell division of neuroblasts in Drosophila
    • Petronczki M, Knoblich JA. 2001. Dm-PAR-6 directs epithelial polarity and asymmetric cell division of neuroblasts in Drosophila. Nat Cell Biol 3:43-49.
    • (2001) Nat Cell Biol , vol.3 , pp. 43-49
    • Petronczki, M.1    Knoblich, J.A.2
  • 63
    • 0036112506 scopus 로고    scopus 로고
    • In vivo imaging reveals different cellular functions for FGF and Dpp signaling in tracheal branching morphogenesis
    • Ribeiro C, Ebner A, Affolter M. 2002. In vivo imaging reveals different cellular functions for FGF and Dpp signaling in tracheal branching morphogenesis. Dev Cell 2:677-683.
    • (2002) Dev Cell , vol.2 , pp. 677-683
    • Ribeiro, C.1    Ebner, A.2    Affolter, M.3
  • 64
    • 11144250929 scopus 로고    scopus 로고
    • Genetic control of cell rearrangements during tracheal tube morphogenesis in Drosophila
    • Ribeiro C, Neumann M, Affolter M. 2004. Genetic control of cell rearrangements during tracheal tube morphogenesis in Drosophila. Curr Biol 14:2197-2207.
    • (2004) Curr Biol , vol.14 , pp. 2197-2207
    • Ribeiro, C.1    Neumann, M.2    Affolter, M.3
  • 65
    • 0024320707 scopus 로고
    • Roles of neuroepithelial cell rearrangement and division in shaping of the avian neural plate
    • Schoenwolf GC, Alvarez IS. 1989. Roles of neuroepithelial cell rearrangement and division in shaping of the avian neural plate. Development 106:427-439.
    • (1989) Development , vol.106 , pp. 427-439
    • Schoenwolf, G.C.1    Alvarez, I.S.2
  • 66
    • 0021148451 scopus 로고
    • Quantitative analyses of changes in cell shapes during bending of the avian neural plate
    • Schoenwolf GC, Franks MV. 1984. Quantitative analyses of changes in cell shapes during bending of the avian neural plate. Dev Biol 105:257-272.
    • (1984) Dev Biol , vol.105 , pp. 257-272
    • Schoenwolf, G.C.1    Franks, M.V.2
  • 67
    • 0027082578 scopus 로고
    • Cell motility driving mediolateral intercalation in explants of Xenopus laevis
    • Shih J, Keller R. 1992. Cell motility driving mediolateral intercalation in explants of Xenopus laevis. Development 116:901-914.
    • (1992) Development , vol.116 , pp. 901-914
    • Shih, J.1    Keller, R.2
  • 68
    • 0242413065 scopus 로고    scopus 로고
    • Mechanisms, mechanics and function of epithelial-mesenchymal transitions in early development
    • Shook D, Keller R. 2003. Mechanisms, mechanics and function of epithelial-mesenchymal transitions in early development. Mech Dev 120:1351-1383.
    • (2003) Mech Dev , vol.120 , pp. 1351-1383
    • Shook, D.1    Keller, R.2
  • 69
    • 0037076213 scopus 로고    scopus 로고
    • Asymmetric localization of frizzled and the determination of notch-dependent cell fate in the Drosophila eye
    • Strutt D, Johnson R, Cooper K, Bray S. 2002. Asymmetric localization of frizzled and the determination of notch-dependent cell fate in the Drosophila eye. Curr Biol 12:813-824.
    • (2002) Curr Biol , vol.12 , pp. 813-824
    • Strutt, D.1    Johnson, R.2    Cooper, K.3    Bray, S.4
  • 70
    • 0025812705 scopus 로고
    • Gastrulation in Drosophila: The formation of the ventral furrow and posterior midgut invaginations
    • Sweeton D, Parks S, Costa M, Wieschaus E. 1991. Gastrulation in Drosophila: the formation of the ventral furrow and posterior midgut invaginations. Development 112:775-789.
    • (1991) Development , vol.112 , pp. 775-789
    • Sweeton, D.1    Parks, S.2    Costa, M.3    Wieschaus, E.4
  • 72
    • 0036418966 scopus 로고    scopus 로고
    • A three-tiered mechanism for regulation of planar cell polarity
    • Tree DR, Ma D, Axelrod JD. 2002a. A three-tiered mechanism for regulation of planar cell polarity. Semin Cell Dev Biol 13:217-224.
    • (2002) Semin Cell Dev Biol , vol.13 , pp. 217-224
    • Tree, D.R.1    Ma, D.2    Axelrod, J.D.3
  • 73
    • 0037013168 scopus 로고    scopus 로고
    • Prickle mediates feedback amplification to generate asymmetric planar cell polarity signaling
    • Tree DR, Shulman JM, Rousset R, Scott MP, Gubb D, Axelrod JD. 2002b. Prickle mediates feedback amplification to generate asymmetric planar cell polarity signaling. Cell 109:371-381.
    • (2002) Cell , vol.109 , pp. 371-381
    • Tree, D.R.1    Shulman, J.M.2    Rousset, R.3    Scott, M.P.4    Gubb, D.5    Axelrod, J.D.6
  • 76
    • 0036087024 scopus 로고    scopus 로고
    • Convergent extension: The molecular control of polarized cell movement during embryonic development
    • Wallingford JB, Fraser SE, Harland RM. 2002. Convergent extension: the molecular control of polarized cell movement during embryonic development. Dev Cell 2:695-706.
    • (2002) Dev Cell , vol.2 , pp. 695-706
    • Wallingford, J.B.1    Fraser, S.E.2    Harland, R.M.3
  • 78
    • 0032381329 scopus 로고    scopus 로고
    • The cellular mechanism of epithelial rearrangement during morphogenesis of the Caenorhabditis elegans dorsal hypodermis
    • Williams-Masson EM, Heid PJ, Lavin CA, Hardin J. 1998. The cellular mechanism of epithelial rearrangement during morphogenesis of the Caenorhabditis elegans dorsal hypodermis. Dev Biol 204: 263-276.
    • (1998) Dev Biol , vol.204 , pp. 263-276
    • Williams-Masson, E.M.1    Heid, P.J.2    Lavin, C.A.3    Hardin, J.4
  • 79
    • 0035815280 scopus 로고    scopus 로고
    • Drosophila Rho-associated kinase (Drok) links Frizzled-mediated planar cell polarity signaling to the actin cytoskeleton
    • Winter CG, Wang B, Ballew A, Royou A, Karess R, Axelrod JD, Luo L. 2001. Drosophila Rho-associated kinase (Drok) links Frizzled-mediated planar cell polarity signaling to the actin cytoskeleton. Cell 105:81-91.
    • (2001) Cell , vol.105 , pp. 81-91
    • Winter, C.G.1    Wang, B.2    Ballew, A.3    Royou, A.4    Karess, R.5    Axelrod, J.D.6    Luo, L.7
  • 80
    • 0034683578 scopus 로고    scopus 로고
    • Drosophila atypical protein kinase C associates with Bazooka and controls polarity of epithelia and neuroblasts
    • Wodarz A, Ramrath A, Grimm A, Knust E. 2000. Drosophila atypical protein kinase C associates with Bazooka and controls polarity of epithelia and neuroblasts. J Cell Biol 150:1361-1374.
    • (2000) J Cell Biol , vol.150 , pp. 1361-1374
    • Wodarz, A.1    Ramrath, A.2    Grimm, A.3    Knust, E.4
  • 81
    • 0037040407 scopus 로고    scopus 로고
    • Regulation of Frizzled by fat-like cadherins during planar polarity signaling in the Drosophila compound eye
    • Yang CH, Axelrod JD, Simon MA. 2002. Regulation of Frizzled by fat-like cadherins during planar polarity signaling in the Drosophila compound eye. Cell 108: 675-688.
    • (2002) Cell , vol.108 , pp. 675-688
    • Yang, C.H.1    Axelrod, J.D.2    Simon, M.A.3
  • 82
    • 0036333373 scopus 로고    scopus 로고
    • Sonic hedgehog and the molecular regulation of mouse neural tube closure
    • Ybot-Gonzalez P, Cogram P, Gerrelli D, Copp AJ. 2002. Sonic hedgehog and the molecular regulation of mouse neural tube closure. Development 129:2507-2517.
    • (2002) Development , vol.129 , pp. 2507-2517
    • Ybot-Gonzalez, P.1    Cogram, P.2    Gerrelli, D.3    Copp, A.J.4
  • 83
    • 0026032985 scopus 로고
    • Dynamic changes in the distribution of cytoplasmic myosin during Drosophila embryogenesis
    • Young PE, Pesacreta TC, Kiehart DP. 1991. Dynamic changes in the distribution of cytoplasmic myosin during Drosophila embryogenesis. Development 111: 1-14.
    • (1991) Development , vol.111 , pp. 1-14
    • Young, P.E.1    Pesacreta, T.C.2    Kiehart, D.P.3
  • 84
    • 12044251332 scopus 로고
    • Morphogenesis in Drosophila requires nonmuscle myosin heavy chain function
    • Young PE, Richman AM, Ketchum AS, Kiehart DP. 1993. Morphogenesis in Drosophila requires nonmuscle myosin heavy chain function. Genes Dev 7:29-41.
    • (1993) Genes Dev , vol.7 , pp. 29-41
    • Young, P.E.1    Richman, A.M.2    Ketchum, A.S.3    Kiehart, D.P.4
  • 85
    • 1642282826 scopus 로고    scopus 로고
    • Patterned gene expression directs bipolar planar polarity in Drosophila
    • Zallen JA, Wieschaus E. 2004. Patterned gene expression directs bipolar planar polarity in Drosophila. Dev Cell 6:343-355.
    • (2004) Dev Cell , vol.6 , pp. 343-355
    • Zallen, J.A.1    Wieschaus, E.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.