메뉴 건너뛰기




Volumn 10, Issue 10, 2014, Pages

Basement Membrane and Cell Integrity of Self-Tissues in Maintaining Drosophila Immunological Tolerance

Author keywords

[No Author keywords available]

Indexed keywords

LAMININ; DROSOPHILA PROTEIN;

EID: 84908330888     PISSN: 15537390     EISSN: 15537404     Source Type: Journal    
DOI: 10.1371/journal.pgen.1004683     Document Type: Article
Times cited : (22)

References (64)
  • 1
    • 77950343791 scopus 로고    scopus 로고
    • Pattern Recognition Receptors and Inflammation
    • Takeuchi O, Akira S, (2010) Pattern Recognition Receptors and Inflammation. Cell 140: 805–820.
    • (2010) Cell , vol.140 , pp. 805-820
    • Takeuchi, O.1    Akira, S.2
  • 2
    • 0030831210 scopus 로고    scopus 로고
    • A human homologue of the Drosophila toll protein signals activation of adaptive immunity
    • Medzhitov R, Preston-Hurlburt P, Janeway CA, Jr (1997) A human homologue of the Drosophila toll protein signals activation of adaptive immunity. Nature 388: 394–397.
    • (1997) Nature , vol.388 , pp. 394-397
    • Medzhitov, R.1    Preston-Hurlburt, P.2    Janeway, C.A.3
  • 3
    • 34247891509 scopus 로고    scopus 로고
    • Immunologically active autoantigens: the role of toll-like receptors in the development of chronic inflammatory disease
    • Marshak-Rothstein A, Rifkin IR, (2007) Immunologically active autoantigens: the role of toll-like receptors in the development of chronic inflammatory disease. Annu Rev Immunol 25: 419–441.
    • (2007) Annu Rev Immunol , vol.25 , pp. 419-441
    • Marshak-Rothstein, A.1    Rifkin, I.R.2
  • 4
    • 0026350755 scopus 로고
    • Lethal(1) aberrant immune response mutations leading to melanotic tumor formation in Drosophila melanogaster
    • Watson KL, Johnson TK, Denell RE, (1991) Lethal(1) aberrant immune response mutations leading to melanotic tumor formation in Drosophila melanogaster. Developmental Genetics 12: 173–187.
    • (1991) Developmental Genetics , vol.12 , pp. 173-187
    • Watson, K.L.1    Johnson, T.K.2    Denell, R.E.3
  • 5
    • 0031748547 scopus 로고    scopus 로고
    • A role for the Drosophila Toll/Cactus pathway in larval hematopoiesis
    • Qiu P, Pan PC, Govind S, (1998) A role for the Drosophila Toll/Cactus pathway in larval hematopoiesis. Development 125: 1909–1920.
    • (1998) Development , vol.125 , pp. 1909-1920
    • Qiu, P.1    Pan, P.C.2    Govind, S.3
  • 6
    • 33748912954 scopus 로고    scopus 로고
    • Melanotic mutants in Drosophila: Pathways and phenotypes
    • Minakhina S, Steward R, (2006) Melanotic mutants in Drosophila: Pathways and phenotypes. Genetics 174: 253–263.
    • (2006) Genetics , vol.174 , pp. 253-263
    • Minakhina, S.1    Steward, R.2
  • 8
    • 1042302152 scopus 로고    scopus 로고
    • Blood cells of Drosophila: Cell lineages and role in host defence
    • Meister M, (2004) Blood cells of Drosophila: Cell lineages and role in host defence. Current Opinion in Immunology 16: 10–15.
    • (2004) Current Opinion in Immunology , vol.16 , pp. 10-15
    • Meister, M.1
  • 9
    • 0016237017 scopus 로고
    • Basement membrane abnormalities in melanotic tumor formation of Drosophila
    • Rizki RM, Rizki TM, (1974) Basement membrane abnormalities in melanotic tumor formation of Drosophila. Experientia 30: 543–546.
    • (1974) Experientia , vol.30 , pp. 543-546
    • Rizki, R.M.1    Rizki, T.M.2
  • 10
    • 34250255917 scopus 로고
    • Developmental analysis of a temperature-sensitive melanotic tumor mutant in Drosophila melanogaster
    • Rizki TM, Rizki RM, (1980) Developmental analysis of a temperature-sensitive melanotic tumor mutant in Drosophila melanogaster. Wilhelm Roux's Archives of Developmental Biology 189: 197–206.
    • (1980) Wilhelm Roux's Archives of Developmental Biology , vol.189 , pp. 197-206
    • Rizki, T.M.1    Rizki, R.M.2
  • 11
  • 12
    • 0029943668 scopus 로고    scopus 로고
    • Identification of immune system and responses genes, and novel mutations causing melanotic tumor formation in Drosophila melanogaster
    • Rodriguez A, Zhou Z, Tang ML, Meller S, Chen J, et al. (1996) Identification of immune system and responses genes, and novel mutations causing melanotic tumor formation in Drosophila melanogaster. Genetics 143: 929–940.
    • (1996) Genetics , vol.143 , pp. 929-940
    • Rodriguez, A.1    Zhou, Z.2    Tang, M.L.3    Meller, S.4    Chen, J.5
  • 13
    • 0027319311 scopus 로고
    • Genetic analysis of laminin A reveals diverse functions during morphogenesis in Drosophila
    • Henchcliffe C, Garcia-Alonso L, Tang J, Goodman CS, (1993) Genetic analysis of laminin A reveals diverse functions during morphogenesis in Drosophila. Development 118: 325–337.
    • (1993) Development , vol.118 , pp. 325-337
    • Henchcliffe, C.1    Garcia-Alonso, L.2    Tang, J.3    Goodman, C.S.4
  • 14
    • 71449083604 scopus 로고    scopus 로고
    • Drosophila laminins act as key regulators of basement membrane assembly and morphogenesis
    • Urbano JM, Torgler CN, Molnar C, Tepass U, López-Varea A, et al. (2009) Drosophila laminins act as key regulators of basement membrane assembly and morphogenesis. Development 136: 4165–4176.
    • (2009) Development , vol.136 , pp. 4165-4176
    • Urbano, J.M.1    Torgler, C.N.2    Molnar, C.3    Tepass, U.4    López-Varea, A.5
  • 15
    • 84856230519 scopus 로고    scopus 로고
    • The role of LamininB2 (LanB2) during mesoderm differentiation in Drosophila
    • Wolfstetter G, Holz A, (2012) The role of LamininB2 (LanB2) during mesoderm differentiation in Drosophila. Cellular and Molecular Life Sciences 69: 267–282.
    • (2012) Cellular and Molecular Life Sciences , vol.69 , pp. 267-282
    • Wolfstetter, G.1    Holz, A.2
  • 16
    • 0033526047 scopus 로고    scopus 로고
    • wing blister, a new Drosophila laminin alpha chain required for cell adhesion and migration during embryonic and imaginal development
    • Martin D, Zusman S, Li X, Williams EL, Khare N, et al. (1999) wing blister, a new Drosophila laminin alpha chain required for cell adhesion and migration during embryonic and imaginal development. Journal of Cell Biology 145: 191–201.
    • (1999) Journal of Cell Biology , vol.145 , pp. 191-201
    • Martin, D.1    Zusman, S.2    Li, X.3    Williams, E.L.4    Khare, N.5
  • 18
    • 60649118070 scopus 로고    scopus 로고
    • An innate immune response of blood cells to tumors and tissue damage in Drosophila
    • Pastor-Pareja JC, Ming W, Tian X, (2008) An innate immune response of blood cells to tumors and tissue damage in Drosophila. DMM Disease Models and Mechanisms 1: 144–154.
    • (2008) DMM Disease Models and Mechanisms , vol.1 , pp. 144-154
    • Pastor-Pareja, J.C.1    Ming, W.2    Tian, X.3
  • 19
    • 78651233297 scopus 로고    scopus 로고
    • Role for sumoylation in systemic inflammation and immune homeostasis in Drosophila larvae
    • Paddibhatla I, Lee MJ, Kalamarz ME, Ferrarese R, Govind S, (2010) Role for sumoylation in systemic inflammation and immune homeostasis in Drosophila larvae. PLoS Pathogens 6: e1001234.
    • (2010) PLoS Pathogens , vol.6 , pp. 1001234
    • Paddibhatla, I.1    Lee, M.J.2    Kalamarz, M.E.3    Ferrarese, R.4    Govind, S.5
  • 21
    • 84861222127 scopus 로고    scopus 로고
    • Basement membranes: Cell scaffoldings and signaling platforms
    • Yurchenco PD, (2011) Basement membranes: Cell scaffoldings and signaling platforms. Cold Spring Harbor Perspectives in Biology 3: 1–27.
    • (2011) Cold Spring Harbor Perspectives in Biology , vol.3 , pp. 1-27
    • Yurchenco, P.D.1
  • 22
    • 0034075654 scopus 로고    scopus 로고
    • Form and function: The laminin family of heterotrimers
    • Colognato H, Yurchenco PD, (2000) Form and function: The laminin family of heterotrimers. Developmental Dynamics 218: 213–234.
    • (2000) Developmental Dynamics , vol.218 , pp. 213-234
    • Colognato, H.1    Yurchenco, P.D.2
  • 23
    • 0020055890 scopus 로고
    • Cytogenetic location and expression of collagen-like genes in Drosophila
    • Natzle JE, Monson JM, McCarthy BJ, (1982) Cytogenetic location and expression of collagen-like genes in Drosophila. Nature 296: 368–371.
    • (1982) Nature , vol.296 , pp. 368-371
    • Natzle, J.E.1    Monson, J.M.2    McCarthy, B.J.3
  • 24
    • 0030720096 scopus 로고    scopus 로고
    • viking: identification and characterization of a second type IV collagen in Drosophila
    • Yasothornsrikul S, Davis WJ, Cramer G, Kimbrell DA, Dearolf CR, (1997) viking: identification and characterization of a second type IV collagen in Drosophila. Gene 198: 17–25.
    • (1997) Gene , vol.198 , pp. 17-25
    • Yasothornsrikul, S.1    Davis, W.J.2    Cramer, G.3    Kimbrell, D.A.4    Dearolf, C.R.5
  • 25
    • 0024279859 scopus 로고
    • Drosophila substrate adhesion molecule: sequence of laminin B1 chain reveals domains of homology with mouse
    • Montell DJ, Goodman CS, (1988) Drosophila substrate adhesion molecule: sequence of laminin B1 chain reveals domains of homology with mouse. Cell 53: 463–473.
    • (1988) Cell , vol.53 , pp. 463-473
    • Montell, D.J.1    Goodman, C.S.2
  • 26
    • 79961238713 scopus 로고    scopus 로고
    • Shaping Cells and Organs in Drosophila by Opposing Roles of Fat Body-Secreted Collagen IV and Perlecan
    • Pastor-Pareja J, Xu T, (2011) Shaping Cells and Organs in Drosophila by Opposing Roles of Fat Body-Secreted Collagen IV and Perlecan. Developmental Cell 21: 245–256.
    • (2011) Developmental Cell , vol.21 , pp. 245-256
    • Pastor-Pareja, J.1    Xu, T.2
  • 28
    • 77953316126 scopus 로고    scopus 로고
    • An in vivo RNA interference screen identifies gene networks controlling Drosophila melanogaster blood cell homeostasis
    • Avet-Rochex A, Boyer K, Polesello C, Gobert V, Osman D, et al. (2010) An in vivo RNA interference screen identifies gene networks controlling Drosophila melanogaster blood cell homeostasis. BMC Developmental Biology 10: 65.
    • (2010) BMC Developmental Biology , vol.10 , pp. 65
    • Avet-Rochex, A.1    Boyer, K.2    Polesello, C.3    Gobert, V.4    Osman, D.5
  • 29
    • 0029031668 scopus 로고
    • Activation of a Drosophila Janus kinase (JAK) causes hematopoietic neoplasia and developmental defects
    • Harrison DA, Binari R, Nahreini TS, Gilman M, Perrimon N, (1995) Activation of a Drosophila Janus kinase (JAK) causes hematopoietic neoplasia and developmental defects. The EMBO Journal 14: 2857–2865.
    • (1995) The EMBO Journal , vol.14 , pp. 2857-2865
    • Harrison, D.A.1    Binari, R.2    Nahreini, T.S.3    Gilman, M.4    Perrimon, N.5
  • 30
    • 0031017533 scopus 로고    scopus 로고
    • Mutation in the Jak kinase JH2 domain hyperactivates Drosophila and mammalian Jak-Stat pathways
    • Luo H, Rose P, Barber D, Hanratty WP, Lee S, et al. (1997) Mutation in the Jak kinase JH2 domain hyperactivates Drosophila and mammalian Jak-Stat pathways. Molecular and Cellular Biology 17: 1562–1571.
    • (1997) Molecular and Cellular Biology , vol.17 , pp. 1562-1571
    • Luo, H.1    Rose, P.2    Barber, D.3    Hanratty, W.P.4    Lee, S.5
  • 31
    • 0242362740 scopus 로고    scopus 로고
    • Thicker than blood: Conserved mechanisms in Drosophila and vertebrate hematopoiesis
    • Evans CJ, Hartenstein V, Banerjee U, (2003) Thicker than blood: Conserved mechanisms in Drosophila and vertebrate hematopoiesis. Developmental Cell 5: 673–690.
    • (2003) Developmental Cell , vol.5 , pp. 673-690
    • Evans, C.J.1    Hartenstein, V.2    Banerjee, U.3
  • 32
    • 0035975940 scopus 로고    scopus 로고
    • Identification of the first invertebrate interleukin JAK/STAT receptor, the Drosophila gene domeless
    • Brown S, Hu N, Castelli-Gair Hombria J, (2001) Identification of the first invertebrate interleukin JAK/STAT receptor, the Drosophila gene domeless. Current Biology 11: 1700–1705.
    • (2001) Current Biology , vol.11 , pp. 1700-1705
    • Brown, S.1    Hu, N.2    Castelli-Gair Hombria, J.3
  • 33
    • 0036208764 scopus 로고    scopus 로고
    • The Hopscotch Jak kinase requires the Raf pathway to promote blood cell activation and differentiation in Drosophila
    • Luo H, Rose P, Roberts T, Dearolf C, (2002) The Hopscotch Jak kinase requires the Raf pathway to promote blood cell activation and differentiation in Drosophila. Molecular Genetics and Genomics 267: 57–63.
    • (2002) Molecular Genetics and Genomics , vol.267 , pp. 57-63
    • Luo, H.1    Rose, P.2    Roberts, T.3    Dearolf, C.4
  • 34
    • 18844414816 scopus 로고    scopus 로고
    • The lesswright mutation activates Rel-related proteins, leading to overproduction of larval hemocytes in Drosophila melanogaster
    • Huang L, Ohsako S, Tanda S, (2005) The lesswright mutation activates Rel-related proteins, leading to overproduction of larval hemocytes in Drosophila melanogaster. Developmental Biology 280: 407–420.
    • (2005) Developmental Biology , vol.280 , pp. 407-420
    • Huang, L.1    Ohsako, S.2    Tanda, S.3
  • 35
    • 35748932086 scopus 로고    scopus 로고
    • The Friend of GATA protein U-shaped functions as a hematopoietic tumor suppressor in Drosophila
    • Sorrentino RP, Tokusumi T, Schulz RA, (2007) The Friend of GATA protein U-shaped functions as a hematopoietic tumor suppressor in Drosophila. Developmental Biology 311: 311–323.
    • (2007) Developmental Biology , vol.311 , pp. 311-323
    • Sorrentino, R.P.1    Tokusumi, T.2    Schulz, R.A.3
  • 36
    • 70349567465 scopus 로고    scopus 로고
    • Drosophila lamin mutations cause melanotic mass formation and lamellocyte differentiation
    • Markovic MP, Kylsten P, Dushay MS, (2009) Drosophila lamin mutations cause melanotic mass formation and lamellocyte differentiation. Molecular Immunology 46: 3245–3250.
    • (2009) Molecular Immunology , vol.46 , pp. 3245-3250
    • Markovic, M.P.1    Kylsten, P.2    Dushay, M.S.3
  • 37
    • 0026734517 scopus 로고
    • Lamellocyte differentiation in Drosophila larvae parasitized by Leptopilina
    • Rizki TM, Rizki RM, (1992) Lamellocyte differentiation in Drosophila larvae parasitized by Leptopilina. Developmental and Comparative Immunology 16: 103–110.
    • (1992) Developmental and Comparative Immunology , vol.16 , pp. 103-110
    • Rizki, T.M.1    Rizki, R.M.2
  • 38
    • 68149158561 scopus 로고    scopus 로고
    • Characterization of a lamellocyte transcriptional enhancer located within the misshapen gene of Drosophila melanogaster
    • Tokusumi T, Sorrentino RP, Russell M, Ferrarese R, Govind S, et al. (2009) Characterization of a lamellocyte transcriptional enhancer located within the misshapen gene of Drosophila melanogaster. PLoS ONE 4: e6429.
    • (2009) PLoS ONE , vol.4 , pp. 6429
    • Tokusumi, T.1    Sorrentino, R.P.2    Russell, M.3    Ferrarese, R.4    Govind, S.5
  • 40
    • 10944238599 scopus 로고    scopus 로고
    • Increased expression of Drosophila tetraspanin, Tsp68C, suppresses the abnormal proliferation of ytr-deficient and Ras/Raf-activated hemocytes
    • Sinenko SA, Mathey-Prevot B, (2004) Increased expression of Drosophila tetraspanin, Tsp68C, suppresses the abnormal proliferation of ytr-deficient and Ras/Raf-activated hemocytes. Oncogene 23: 9120–9128.
    • (2004) Oncogene , vol.23 , pp. 9120-9128
    • Sinenko, S.A.1    Mathey-Prevot, B.2
  • 41
    • 0030991367 scopus 로고    scopus 로고
    • Localization of proteins to the apico-lateral junctions of Drosophila epithelia
    • Woods DF, Wu JOW, Bryant PJ, (1997) Localization of proteins to the apico-lateral junctions of Drosophila epithelia. Developmental Genetics 20: 111–118.
    • (1997) Developmental Genetics , vol.20 , pp. 111-118
    • Woods, D.F.1    Wu, J.O.W.2    Bryant, P.J.3
  • 42
    • 0034644110 scopus 로고    scopus 로고
    • The Notch signalling regulator Fringe acts in the Golgi apparatus and requires the glycosyltransferase signature motif DXD
    • Munro S, Freeman M, (2000) The Notch signalling regulator Fringe acts in the Golgi apparatus and requires the glycosyltransferase signature motif DXD. Current Biology 10: 813–820.
    • (2000) Current Biology , vol.10 , pp. 813-820
    • Munro, S.1    Freeman, M.2
  • 43
    • 33846913438 scopus 로고    scopus 로고
    • Laminin and a Plasmodium ookinete surface protein inhibit melanotic encapsulation of Sephadex beads in the hemocoel of mosquitoes
    • Warburg A, Shtern A, Cohen N, Dahan N, (2007) Laminin and a Plasmodium ookinete surface protein inhibit melanotic encapsulation of Sephadex beads in the hemocoel of mosquitoes. Microbes and Infection 9: 192–199.
    • (2007) Microbes and Infection , vol.9 , pp. 192-199
    • Warburg, A.1    Shtern, A.2    Cohen, N.3    Dahan, N.4
  • 44
    • 84908336231 scopus 로고    scopus 로고
    • Salt G (1970) The cellular defence reactions of insects: Cambridge University Press.
  • 45
    • 65349105554 scopus 로고    scopus 로고
    • Localisation of laminin within Plasmodium berghei oocysts and the midgut epithelial cells of Anopheles stephensi
    • Nacer A, Walker K, Hurd H, (2008) Localisation of laminin within Plasmodium berghei oocysts and the midgut epithelial cells of Anopheles stephensi. Parasites & Vectors 1: 33.
    • (2008) Parasites & Vectors , vol.1 , pp. 33
    • Nacer, A.1    Walker, K.2    Hurd, H.3
  • 46
    • 34447098797 scopus 로고    scopus 로고
    • Multistep Pathogenesis of Autoimmune Disease
    • Goodnow CC, (2007) Multistep Pathogenesis of Autoimmune Disease. Cell 130: 25–35.
    • (2007) Cell , vol.130 , pp. 25-35
    • Goodnow, C.C.1
  • 47
    • 84860708796 scopus 로고    scopus 로고
    • Laminin is required to orient epithelial polarity in the C. elegans pharynx
    • Rasmussen JP, Reddy SS, Priess JR, (2012) Laminin is required to orient epithelial polarity in the C. elegans pharynx. Development 139: 2050–2060.
    • (2012) Development , vol.139 , pp. 2050-2060
    • Rasmussen, J.P.1    Reddy, S.S.2    Priess, J.R.3
  • 48
    • 0242666126 scopus 로고    scopus 로고
    • A Genetic Screen in Drosophila for Metastatic Behavior
    • Pagliarini RA, Xu T, (2003) A Genetic Screen in Drosophila for Metastatic Behavior. Science 302: 1227–1231.
    • (2003) Science , vol.302 , pp. 1227-1231
    • Pagliarini, R.A.1    Xu, T.2
  • 49
    • 4043170088 scopus 로고    scopus 로고
    • Epithelial polarity and proliferation control: Links from the Drosophila neoplastictumor suppressors
    • Bilder D, (2004) Epithelial polarity and proliferation control: Links from the Drosophila neoplastictumor suppressors. Genes and Development 18: 1909–1925.
    • (2004) Genes and Development , vol.18 , pp. 1909-1925
    • Bilder, D.1
  • 50
    • 49249124898 scopus 로고    scopus 로고
    • Molecular composition of the peri-islet basement membrane in NOD mice: A barrier against destructive insulitis
    • Irving-Rodgers HF, Ziolkowski AF, Parish CR, Sado Y, Ninomiya Y, et al. (2008) Molecular composition of the peri-islet basement membrane in NOD mice: A barrier against destructive insulitis. Diabetologia 51: 1680–1688.
    • (2008) Diabetologia , vol.51 , pp. 1680-1688
    • Irving-Rodgers, H.F.1    Ziolkowski, A.F.2    Parish, C.R.3    Sado, Y.4    Ninomiya, Y.5
  • 51
    • 84873051300 scopus 로고    scopus 로고
    • The peri-islet basement membrane, a barrier to infiltrating leukocytes in type 1 diabetes in mouse and human
    • Korpos E, Kadri N, Kappelhoff R, Wegner J, Overall CM, et al. (2013) The peri-islet basement membrane, a barrier to infiltrating leukocytes in type 1 diabetes in mouse and human. Diabetes 62: 531–542.
    • (2013) Diabetes , vol.62 , pp. 531-542
    • Korpos, E.1    Kadri, N.2    Kappelhoff, R.3    Wegner, J.4    Overall, C.M.5
  • 52
    • 10444278111 scopus 로고    scopus 로고
    • Segment-specific but pathologic laminin isoform profiles in human labial salivary glands of patients with Sjögren's syndrome
    • Laine M, Virtanen I, Salo T, Konttinen YT, (2004) Segment-specific but pathologic laminin isoform profiles in human labial salivary glands of patients with Sjögren's syndrome. Arthritis and Rheumatism 50: 3968–3973.
    • (2004) Arthritis and Rheumatism , vol.50 , pp. 3968-3973
    • Laine, M.1    Virtanen, I.2    Salo, T.3    Konttinen, Y.T.4
  • 54
    • 0022616253 scopus 로고
    • Selective rejection of H-2-deficient lymphoma variants suggests alternative immune defence strategy
    • Karre K, Ljunggren HG, Piontek G, Kiessling R, (1986) Selective rejection of H-2-deficient lymphoma variants suggests alternative immune defence strategy. Nature 319: 675–678.
    • (1986) Nature , vol.319 , pp. 675-678
    • Karre, K.1    Ljunggren, H.G.2    Piontek, G.3    Kiessling, R.4
  • 55
    • 78650970845 scopus 로고    scopus 로고
    • Innate or adaptive immunity? The example of natural killer cells
    • Vivier E, Raulet DH, Moretta A, Caligiuri MA, Zitvogel L, et al. (2011) Innate or adaptive immunity? The example of natural killer cells. Science 331: 44–49.
    • (2011) Science , vol.331 , pp. 44-49
    • Vivier, E.1    Raulet, D.H.2    Moretta, A.3    Caligiuri, M.A.4    Zitvogel, L.5
  • 56
    • 0037279629 scopus 로고    scopus 로고
    • Analysis of ras-induced overproliferation in Drosophila hemocytes
    • Asha H, Nagy I, Kovacs G, Stetson D, Ando I, et al. (2003) Analysis of ras-induced overproliferation in Drosophila hemocytes. Genetics 163: 203–215.
    • (2003) Genetics , vol.163 , pp. 203-215
    • Asha, H.1    Nagy, I.2    Kovacs, G.3    Stetson, D.4    Ando, I.5
  • 57
    • 73249135853 scopus 로고    scopus 로고
    • New hemocyte-specific enhancer-reporter transgenes for the analysis of hematopoiesis in Drosophila
    • Tokusumi T, Shoue DA, Tokusumi Y, Stoller JR, Schulz RA, (2009) New hemocyte-specific enhancer-reporter transgenes for the analysis of hematopoiesis in Drosophila. Genesis 47: 771–774.
    • (2009) Genesis , vol.47 , pp. 771-774
    • Tokusumi, T.1    Shoue, D.A.2    Tokusumi, Y.3    Stoller, J.R.4    Schulz, R.A.5
  • 59
    • 0028934970 scopus 로고
    • Changing Distributions of Extracellular Matrix Components during Early Wing Morphogenesis in Drosophila
    • Murray M, Fessler L, Palka J, (1995) Changing Distributions of Extracellular Matrix Components during Early Wing Morphogenesis in Drosophila. Developmental biology 168: 150–165.
    • (1995) Developmental biology , vol.168 , pp. 150-165
    • Murray, M.1    Fessler, L.2    Palka, J.3
  • 60
    • 0011489246 scopus 로고    scopus 로고
    • Perlecan domain V of Drosophila melanogaster. Sequence, recombinant analysis and tissue expression
    • Friedrich MVK, Schneider M, Timpl R, Baumgartner S, (2000) Perlecan domain V of Drosophila melanogaster. Sequence, recombinant analysis and tissue expression. European Journal of Biochemistry 267: 3149–3159.
    • (2000) European Journal of Biochemistry , vol.267 , pp. 3149-3159
    • Friedrich, M.V.K.1    Schneider, M.2    Timpl, R.3    Baumgartner, S.4
  • 61
    • 68449093091 scopus 로고    scopus 로고
    • Fusion of circular and longitudinal muscles in Drosophila is independent of the endoderm but further visceral muscle differentiation requires a close contact between mesoderm and endoderm
    • Wolfstetter G, Shirinian M, Stute C, Grabbe C, Hummel T, et al. (2009) Fusion of circular and longitudinal muscles in Drosophila is independent of the endoderm but further visceral muscle differentiation requires a close contact between mesoderm and endoderm. Mechanisms of Development 126: 721–736.
    • (2009) Mechanisms of Development , vol.126 , pp. 721-736
    • Wolfstetter, G.1    Shirinian, M.2    Stute, C.3    Grabbe, C.4    Hummel, T.5
  • 64
    • 0037137432 scopus 로고    scopus 로고
    • Notch signaling controls lineage specification during Drosophila larval hematopoiesis
    • Duvic B, Hoffmann JA, Meister M, Royet J, (2002) Notch signaling controls lineage specification during Drosophila larval hematopoiesis. Current Biology 12: 1923–1927.
    • (2002) Current Biology , vol.12 , pp. 1923-1927
    • Duvic, B.1    Hoffmann, J.A.2    Meister, M.3    Royet, J.4


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.