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Volumn 21, Issue 4, 2014, Pages 547-556

Autophagy is required for zebrafish caudal fin regeneration

Author keywords

autophagy; cell death; differentiation; regeneration; zebrafish

Indexed keywords

MITOGEN ACTIVATED PROTEIN KINASE;

EID: 84903362371     PISSN: 13509047     EISSN: 14765403     Source Type: Journal    
DOI: 10.1038/cdd.2013.175     Document Type: Article
Times cited : (69)

References (51)
  • 1
    • 79959393378 scopus 로고    scopus 로고
    • Tissue engineering and regenerative medicine: History, progress, and challenges
    • Berthiaume F, Maguire TJ, Yarmush ML. Tissue engineering and regenerative medicine: history, progress, and challenges. Annu Rev Chem Biomol Eng 2011; 2: 403-430.
    • (2011) Annu Rev Chem Biomol Eng , vol.2 , pp. 403-430
    • Berthiaume, F.1    Maguire, T.J.2    Yarmush, M.L.3
  • 2
    • 78951478823 scopus 로고    scopus 로고
    • Dedifferentiation, transdifferentiation and reprogramming: Three routes to regeneration
    • Jopling C, Boue S, Izpisua Belmonte JC. Dedifferentiation, transdifferentiation and reprogramming: three routes to regeneration. Nat Rev Mol Cell Biol 2011; 12: 79-89.
    • (2011) Nat Rev Mol Cell Biol , vol.12 , pp. 79-89
    • Jopling, C.1    Boue, S.2    Izpisua Belmonte, J.C.3
  • 3
    • 77956873456 scopus 로고    scopus 로고
    • Advances in understanding tissue regenerative capacity and mechanisms in animals
    • Poss KD. Advances in understanding tissue regenerative capacity and mechanisms in animals. Nat Rev Genet 2010; 11: 710-722.
    • (2010) Nat Rev Genet , vol.11 , pp. 710-722
    • Poss, K.D.1
  • 4
    • 79960286977 scopus 로고    scopus 로고
    • The cellular basis for animal regeneration
    • Tanaka EM, Reddien PW. The cellular basis for animal regeneration. Dev Cell 2011; 21: 172-185.
    • (2011) Dev Cell , vol.21 , pp. 172-185
    • Tanaka, E.M.1    Reddien, P.W.2
  • 5
    • 77950200829 scopus 로고    scopus 로고
    • Zebrafish heart regeneration occurs by cardiomyocyte dedifferentiation and proliferation
    • Jopling C, Sleep E, Raya M, Mart?́ M, Raya A, Izpisu'a Belmonte JC et al. Zebrafish heart regeneration occurs by cardiomyocyte dedifferentiation and proliferation. Nature 2010; 464: 606-609.
    • (2010) Nature , vol.464 , pp. 606-609
    • Jopling, C.1    Sleep, E.2    Raya, M.3    Mart́, M.4    Raya, A.5    Izpisu, A.6    Belmonte, J.C.7
  • 7
    • 84865279742 scopus 로고    scopus 로고
    • An amputation resets positional information to a proximal identity in the regenerating zebrafish caudal fin
    • Azevedo AS, Sousa S, Jacinto A, Saude L. An amputation resets positional information to a proximal identity in the regenerating zebrafish caudal fin. BMC Dev Biol 2012; 12: 24.
    • (2012) BMC Dev Biol , vol.12 , pp. 24
    • Azevedo, A.S.1    Sousa, S.2    Jacinto, A.3    Saude, L.4
  • 8
    • 84964799404 scopus 로고    scopus 로고
    • Life-long preservation of the regenerative capacity in the fin and heart in zebrafish
    • Itou J, Kawakami H, Burgoyne T, Kawakami Y. Life-long preservation of the regenerative capacity in the fin and heart in zebrafish. Biology Open 2012; 1: 739-746.
    • (2012) Biology Open , vol.1 , pp. 739-746
    • Itou, J.1    Kawakami, H.2    Burgoyne, T.3    Kawakami, Y.4
  • 9
    • 67650073154 scopus 로고    scopus 로고
    • Cells keep a memory of their tissue origin during axolotl limb regeneration
    • Kragl M, Knapp D, Nacu E, Khattak S, Maden M, Epperlein HH et al. Cells keep a memory of their tissue origin during axolotl limb regeneration. Nature 2009; 460: 60-65.
    • (2009) Nature , vol.460 , pp. 60-65
    • Kragl, M.1    Knapp, D.2    Nacu, E.3    Khattak, S.4    Maden, M.5    Epperlein, H.H.6
  • 10
    • 79955926225 scopus 로고    scopus 로고
    • Bone regenerates via dedifferentiation of osteoblasts in the zebrafish fin
    • Knopf F, Hammond C, Chekuru A, Kurth T, Hans S, Weber CW et al. Bone regenerates via dedifferentiation of osteoblasts in the zebrafish fin. Dev Cell 2011; 20: 713-724.
    • (2011) Dev Cell , vol.20 , pp. 713-724
    • Knopf, F.1    Hammond, C.2    Chekuru, A.3    Kurth, T.4    Hans, S.5    Weber, C.W.6
  • 11
    • 80051949501 scopus 로고    scopus 로고
    • Differentiated skeletal cells contribute to blastema formation during zebrafish fin regeneration
    • Sousa S, Afonso N, Bensimon-Brito A, Fonseca M, Simoes M, Leon J et al. Differentiated skeletal cells contribute to blastema formation during zebrafish fin regeneration. Development 2011; 138: 3897-3905.
    • (2011) Development , vol.138 , pp. 3897-3905
    • Sousa, S.1    Afonso, N.2    Bensimon-Brito, A.3    Fonseca, M.4    Simoes, M.5    Leon, J.6
  • 12
    • 78649815544 scopus 로고    scopus 로고
    • Clonal analyses reveal roles of organ founding stem cells, melanocyte stem cells and melanoblasts in establishment, growth and regeneration of the adult zebrafish fin
    • Tu S, Johnson SL. Clonal analyses reveal roles of organ founding stem cells, melanocyte stem cells and melanoblasts in establishment, growth and regeneration of the adult zebrafish fin. Development 2011; 137: 3931-3939.
    • (2011) Development , vol.137 , pp. 3931-3939
    • Tu, S.1    Johnson, S.L.2
  • 13
    • 84859845794 scopus 로고    scopus 로고
    • Regeneration of amputated zebrafish fin rays from de novo osteoblasts
    • Singh SP, Holdway JE, Poss KD. Regeneration of amputated zebrafish fin rays from de novo osteoblasts. Dev Cell 2012; 22: 879-886.
    • (2012) Dev Cell , vol.22 , pp. 879-886
    • Singh, S.P.1    Holdway, J.E.2    Poss, K.D.3
  • 14
    • 82855181070 scopus 로고    scopus 로고
    • Retinoic acid signaling controls the formation, proliferation and survival of the blastema during adult zebrafish fin regeneration
    • Blum N, Begemann G. Retinoic acid signaling controls the formation, proliferation and survival of the blastema during adult zebrafish fin regeneration. Development 2012; 139: 107-116.
    • (2012) Development , vol.139 , pp. 107-116
    • Blum, N.1    Begemann, G.2
  • 15
    • 0031735210 scopus 로고    scopus 로고
    • Involvement of the sonic hedgehog, patched 1 and bmp2 genes in patterning of the zebrafish dermal fin rays
    • Laforest L, Brown CW, Poleo G, Gé raudie J, Tada M, Ekker M et al. Involvement of the sonic hedgehog, patched 1 and bmp2 genes in patterning of the zebrafish dermal fin rays. Development 1998; 125: 4175-4184.
    • (1998) Development , vol.125 , pp. 4175-4184
    • Laforest, L.1    Brown, C.W.2    Poleo, G.3    Géraudie, J.4    Tada, M.5    Ekker, M.6
  • 16
    • 33750984806 scopus 로고    scopus 로고
    • Inhibition of BMP signaling during zebrafish fin regeneration disrupts fin growth and scleroblasts differentiation and function
    • Smith A, Avaron F, Guay D, Padhi BK, Akimenko MA. Inhibition of BMP signaling during zebrafish fin regeneration disrupts fin growth and scleroblasts differentiation and function. Dev Biol 2006; 299: 438-454.
    • (2006) Dev Biol , vol.299 , pp. 438-454
    • Smith, A.1    Avaron, F.2    Guay, D.3    Padhi, B.K.4    Akimenko, M.A.5
  • 17
    • 29344463583 scopus 로고    scopus 로고
    • Fgf20 is essential for initiating zebrafish fin regeneration
    • Whitehead GG, Makino S, Lien CL, Keating MT. fgf20 is essential for initiating zebrafish fin regeneration. Science 2005; 310: 1957-1960.
    • (2005) Science , vol.310 , pp. 1957-1960
    • Whitehead, G.G.1    Makino, S.2    Lien, C.L.3    Keating, M.T.4
  • 19
    • 39849109338 scopus 로고    scopus 로고
    • Autophagy fights disease through cellular self-digestion
    • Mizushima N, Levine B, Cuervo AM, Klionsky DJ. Autophagy fights disease through cellular self-digestion. Nature 2008; 451: 1069-1075.
    • (2008) Nature , vol.451 , pp. 1069-1075
    • Mizushima, N.1    Levine, B.2    Cuervo, A.M.3    Klionsky, D.J.4
  • 20
    • 1842583789 scopus 로고    scopus 로고
    • Development by self-digestion: Molecular mechanisms and biological functions of autophagy
    • Levine B, Klionsky DJ. Development by self-digestion: molecular mechanisms and biological functions of autophagy. Dev Cell 2004; 6: 463-477.
    • (2004) Dev Cell , vol.6 , pp. 463-477
    • Levine, B.1    Klionsky, D.J.2
  • 21
    • 77956416339 scopus 로고    scopus 로고
    • Autophagy in mammalian development and differentiation
    • Mizushima N, Levine B. Autophagy in mammalian development and differentiation. Nat Cell Biol 2010; 12: 823-830.
    • (2010) Nat Cell Biol , vol.12 , pp. 823-830
    • Mizushima, N.1    Levine, B.2
  • 22
    • 38949108670 scopus 로고    scopus 로고
    • Guidelines for the use and interpretation of assays for monitoring autophagy in higher eukaryotes
    • Klionsky DJ et al. Guidelines for the use and interpretation of assays for monitoring autophagy in higher eukaryotes. Autophagy 2008; 4: 151-175.
    • (2008) Autophagy , vol.4 , pp. 151-175
    • Klionsky, D.J.1
  • 23
    • 66349105109 scopus 로고    scopus 로고
    • Assaying autophagic activity in transgenic GFP-Lc3 and GFP-Gabarap zebrafish embryos
    • He C, Bartholomew CR, Zhou W, Klionsky DJ. Assaying autophagic activity in transgenic GFP-Lc3 and GFP-Gabarap zebrafish embryos. Autophagy 2009; 5: 520-526.
    • (2009) Autophagy , vol.5 , pp. 520-526
    • He, C.1    Bartholomew, C.R.2    Zhou, W.3    Klionsky, D.J.4
  • 24
    • 84862295360 scopus 로고    scopus 로고
    • Guidelines for the use and interpretation of assays for monitoring autophagy
    • Klionsky DJ et al. Guidelines for the use and interpretation of assays for monitoring autophagy. Autophagy 2012; 8: 445-544.
    • (2012) Autophagy , vol.8 , pp. 445-544
    • Klionsky, D.J.1
  • 25
    • 79251577061 scopus 로고    scopus 로고
    • The regulation of autophagy - Unanswered questions
    • Chen Y, Klionsky DJ. The regulation of autophagy - unanswered questions. J Cell Sci 2011; 124: 161-170.
    • (2011) J Cell Sci , vol.124 , pp. 161-170
    • Chen, Y.1    Klionsky, D.J.2
  • 27
    • 82855170841 scopus 로고    scopus 로고
    • Expression pattern and functions of autophagy-related gene atg5 in zebrafish organogenesis
    • Hu Z, Zhang J, Zhang Q. Expression pattern and functions of autophagy-related gene atg5 in zebrafish organogenesis. Autophagy 2011; 7: 1514-1527.
    • (2011) Autophagy , vol.7 , pp. 1514-1527
    • Hu, Z.1    Zhang, J.2    Zhang, Q.3
  • 28
    • 79957792406 scopus 로고    scopus 로고
    • Concurrent detection of autolysosome formation and lysosomal degradation by flow cytometry in a high-content screen for inducers of autophagy
    • Hundeshagen P, Hamacher-Brady A, Eils R, Brady NR. Concurrent detection of autolysosome formation and lysosomal degradation by flow cytometry in a high-content screen for inducers of autophagy. BMC Biol 2011; 9: 38.
    • (2011) BMC Biol , vol.9 , pp. 38
    • Hundeshagen, P.1    Hamacher-Brady, A.2    Eils, R.3    Brady, N.R.4
  • 30
    • 23944448372 scopus 로고    scopus 로고
    • Inactivation of the autophagy gene bec-1 triggers apoptotic cell death in C. Elegans
    • Takacs-Vellai K, Vellai T, Puoti A, Passannante M, Wicky C, Streit A et al. Inactivation of the autophagy gene bec-1 triggers apoptotic cell death in C. elegans. Curr Biol 2005; 15: 1513-1517.
    • (2005) Curr Biol , vol.15 , pp. 1513-1517
    • Takacs-Vellai, K.1    Vellai, T.2    Puoti, A.3    Passannante, M.4    Wicky, C.5    Streit, A.6
  • 31
    • 0036861418 scopus 로고    scopus 로고
    • Mps1 defines a proximal blastemal proliferative compartment essential for zebrafish fin regeneration
    • Poss KD, Nechiporuk A, Hillam AM, Johnson SL, Keating MT. Mps1 defines a proximal blastemal proliferative compartment essential for zebrafish fin regeneration. Development 2002; 129: 5141-5149.
    • (2002) Development , vol.129 , pp. 5141-5149
    • Poss, K.D.1    Nechiporuk, A.2    Hillam, A.M.3    Johnson, S.L.4    Keating, M.T.5
  • 32
    • 29644445924 scopus 로고    scopus 로고
    • Fgf signaling instructs positiondependent growth rate during zebrafish fin regeneration
    • Lee Y, Grill S, Sanchez A, Murphy-Ryan M, Poss KD. Fgf signaling instructs positiondependent growth rate during zebrafish fin regeneration. Development 2005; 132: 5173-5183.
    • (2005) Development , vol.132 , pp. 5173-5183
    • Lee, Y.1    Grill, S.2    Sanchez, A.3    Murphy-Ryan, M.4    Poss, K.D.5
  • 34
    • 33846186410 scopus 로고    scopus 로고
    • Control of the autophagy maturation step by the MAPK ERK and p38: Lessons from environmental carcinogens
    • Corcelle E, Djerbi N, Mari M, Nebout M, Fiorini C, Fé nichel P et al. Control of the autophagy maturation step by the MAPK ERK and p38: lessons from environmental carcinogens. Autophagy 2007; 3: 57-59.
    • (2007) Autophagy , vol.3 , pp. 57-59
    • Corcelle, E.1    Djerbi, N.2    Mari, M.3    Nebout, M.4    Fiorini, C.5    Fénichel, P.6
  • 35
    • 34548421950 scopus 로고    scopus 로고
    • Dual roles of autophagy in the survival of Caenorhabditis elegans during starvation
    • Kang C, You YJ, Avery L. Dual roles of autophagy in the survival of Caenorhabditis elegans during starvation. Genes Dev 2007; 21: 2161-2171.
    • (2007) Genes Dev , vol.21 , pp. 2161-2171
    • Kang, C.1    You, Y.J.2    Avery, L.3
  • 37
    • 67549089493 scopus 로고    scopus 로고
    • Maintenance of blastemal proliferation by functionally diverse epidermis in regenerating zebrafish fins
    • Lee Y, Lee Y, Hami D, De Val S, Kagermeier-Schenk B, Wills AA et al. Maintenance of blastemal proliferation by functionally diverse epidermis in regenerating zebrafish fins. Dev Biol 2009; 331: 270-280.
    • (2009) Dev Biol , vol.331 , pp. 270-280
    • Lee, Y.1    Lee, Y.2    Hami, D.3    De Val, S.4    Kagermeier-Schenk, B.5    Wills, A.A.6
  • 38
    • 34548072239 scopus 로고    scopus 로고
    • Gtdap-1 promotes autophagy and is required for planarian remodeling during regeneration and starvation
    • Gonzalez-Estevez C, Felix DA, Aboobaker AA, Salo E. Gtdap-1 promotes autophagy and is required for planarian remodeling during regeneration and starvation. Proc Natl Acad Sci USA 2007; 104: 13373-13378.
    • (2007) Proc Natl Acad Sci USA , vol.104 , pp. 13373-13378
    • Gonzalez-Estevez, C.1    Felix, D.A.2    Aboobaker, A.A.3    Salo, E.4
  • 39
    • 58149135024 scopus 로고    scopus 로고
    • Fgfs control homeostatic regeneration in adult zebrafish fins
    • Wills AA, Kidd AR III, Lepilina A, Poss KD. Fgfs control homeostatic regeneration in adult zebrafish fins. Development 2008; 135: 3063-3070.
    • (2008) Development , vol.135 , pp. 3063-3070
    • Wills, A.A.1    Kidd Iii., A.R.2    Lepilina, A.3    Poss, K.D.4
  • 40
    • 69249153394 scopus 로고    scopus 로고
    • A non-canonical MEK/ERK signaling pathway regulates autophagy via regulating Beclin 1
    • Wang J, Whiteman MW, Lian H, Wang G, Singh A, Huang D et al. A non-canonical MEK/ERK signaling pathway regulates autophagy via regulating Beclin 1. J Biol Chem 2009; 284: 21412-21424.
    • (2009) J Biol Chem , vol.284 , pp. 21412-21424
    • Wang, J.1    Whiteman, M.W.2    Lian, H.3    Wang, G.4    Singh, A.5    Huang, D.6
  • 41
    • 0034672063 scopus 로고    scopus 로고
    • Erk1/2-dependent phosphorylation of Ga-interacting protein stimulates its GTPase accelerating activity and autophagy in human colon cancer cells
    • Ogier-Denis E, Pattingre S, El Benna J, Codongo P. Erk1/2-dependent phosphorylation of Ga-interacting protein stimulates its GTPase accelerating activity and autophagy in human colon cancer cells. J Biol Chem 2000; 275: 39090-39095.
    • (2000) J Biol Chem , vol.275 , pp. 39090-39095
    • Ogier-Denis, E.1    Pattingre, S.2    El Benna, J.3    Codongo, P.4
  • 42
    • 80052819789 scopus 로고    scopus 로고
    • Rapamycin and other longevitypromoting compounds enhance the generation of mouse induced pluripotent stem cells
    • Chen T, Shen L, Yu J, Wan H, Guo A, Chen J et al. Rapamycin and other longevitypromoting compounds enhance the generation of mouse induced pluripotent stem cells. Aging Cell 2011; 10: 909-911.
    • (2011) Aging Cell , vol.10 , pp. 909-911
    • Chen, T.1    Shen, L.2    Yu, J.3    Wan, H.4    Guo, A.5    Chen, J.6
  • 43
    • 70349330773 scopus 로고    scopus 로고
    • The regulation of aging: Does autophagy underlie longevity?
    • Vellai T, Taká cs-Vellai K, Sass M, Klionsky DJ. The regulation of aging: does autophagy underlie longevity? Trends Cell Biol 2009; 19: 487-494.
    • (2009) Trends Cell Biol , vol.19 , pp. 487-494
    • Vellai, T.T.1
  • 44
    • 0033781771 scopus 로고    scopus 로고
    • Induction of lef1 during zebrafish fin regeneration
    • Poss KD, Shen J, Keating MT. Induction of lef1 during zebrafish fin regeneration. Dev Dyn 2000; 219: 282-286.
    • (2000) Dev Dyn , vol.219 , pp. 282-286
    • Poss, K.D.1    Shen, J.2    Keating, M.T.3
  • 45
    • 77950365662 scopus 로고    scopus 로고
    • IGF signaling between blastema and wound epidermis is required for fin regeneration
    • Chablais F, Jazwinska A. IGF signaling between blastema and wound epidermis is required for fin regeneration. Development 2010; 137: 871-879.
    • (2010) Development , vol.137 , pp. 871-879
    • Chablais, F.1    Jazwinska, A.2
  • 46
    • 84863003411 scopus 로고    scopus 로고
    • In vivo electroporation of morpholinos into the regenerating adult zebrafish tail fin
    • Hyde DR, Godwin AR, Thummel R. In vivo electroporation of morpholinos into the regenerating adult zebrafish tail fin. J Vis Exp 2012; 29: e3632.
    • (2012) J Vis Exp , vol.29
    • Hyde, D.R.1    Godwin, A.R.2    Thummel, R.3
  • 47
    • 59649109509 scopus 로고    scopus 로고
    • Tracking gene expression during zebrafish osteoblast differentiation
    • Li N, Felber K, Elks P, Croucher P, Roehl HH. Tracking gene expression during zebrafish osteoblast differentiation. Dev Dyn 2009; 238: 459-466.
    • (2009) Dev Dyn , vol.238 , pp. 459-466
    • Li, N.1    Felber, K.2    Elks, P.3    Croucher, P.4    Roehl, H.H.5
  • 49
    • 33748800240 scopus 로고    scopus 로고
    • FGF signaling is required for b-catenin-mediated induction of the zebrafish organizer
    • Maegawa S, Varga M, Weinberg ES. FGF signaling is required for b-catenin-mediated induction of the zebrafish organizer. Development 2006; 133: 3265-3276.
    • (2006) Development , vol.133 , pp. 3265-3276
    • Maegawa, S.1    Varga, M.2    Weinberg, E.S.3


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.