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ZFIN ID:
ZDB-MIRNAG-070111-3
CITATIONS
(20 total)
miRNA Gene Name:
microRNA 133a-1
miRNA Gene Symbol:
mir133a-1
Beauchemin, M., Smith, A., Yin, V.P. (2015) Dynamic microRNA-101a and Fosab expression controls zebrafish heart regeneration. Development (Cambridge, England). 142:4026-37
Dardis, G., Tryon, R., Ton, Q., Johnson, S.L., Iovine, M.K. (2017) Cx43 suppresses evx1 expression to regulate joint initiation in the regenerating fin. Developmental Dynamics : an official publication of the American Association of Anatomists. 246(9):691-699
Desvignes, T., Bardou, P., Montfort, J., Sydes, J., Guyomar, C., George, S., Postlethwait, J.H., Bobe, J. (2022) FishmiRNA: An evolutionarily supported microRNA annotation and expression database for ray-finned fishes. Molecular Biology and Evolution. 39(2)
Desvignes, T., Batzel, P., Sydes, J., Eames, B.F., Postlethwait, J.H. (2019) miRNA analysis with Prost! reveals evolutionary conservation of organ-enriched expression and post-transcriptional modifications in three-spined stickleback and zebrafish. Scientific Reports. 9:3913
Duran, B.O.D.S., Dal-Pai-Silva, M., Garcia de la Serrana, D. (2019) Rainbow trout slow myoblast cell culture as a model to study slow skeletal muscle and the characterization of
mir-133
and
mir-499
families as a case study. The Journal of experimental biology. 223(Pt 2):
King, B.L., Yin, V.P. (2016) A Conserved MicroRNA Regulatory Circuit Is Differentially Controlled during Limb/Appendage Regeneration. PLoS One. 11:e0157106
Mallappa, C., Nasipak, B.T., Etheridge, L., Androphy, E.J., Jones, S.N., Sagerström, C.G., Ohkawa, Y., and Imbalzano, A.N. (2010) Myogenic microRNA expression requires ATP-dependent chromatin remodeling enzyme function. Molecular and cellular biology. 30(13):3176-3186
Martínez, R., Tu, W., Eng, T., Allaire-Leung, M., Piña, B., Navarro-Martín, L., Mennigen, J.A. (2020) Acute and long-term metabolic consequences of early developmental Bisphenol A exposure in zebrafish (Danio rerio). Chemosphere. 256:127080
Mishima, Y., Abreu-Goodger, C., Staton, A.A., Stahlhut, C., Shou, C., Cheng, C., Gerstein, M., Enright, A.J., and Giraldez, A.J. (2009) Zebrafish miR-1 and miR-133 shape muscle gene expression and regulate sarcomeric actin organization. Genes & Development. 23(5):619-632
Nachtigall, P., Dias, M., Pinhal, D. (2014) Evolution and genomic organization of muscle microRNAs in fish genomes. BMC Evolutionary Biology. 14:196
Romano, N., Ceci, M. (2020) Are microRNAs responsible for cardiac hypertrophy in fish and mammals? What we can learn in the activation process in a zebrafish ex vivo model. Biochimica et biophysica acta. Molecular basis of disease. 1866(11):165896
Tu, W., Mart Iacute Nez L Oacute Pez, R.E.N.F., Navarro-Martin, L., Kostyniuk, D.J., Hum, C., Huang, J., Deng, M., Jin, Y., Chan, H.M., Mennigen, J. (2019) Bioconcentration and metabolic effects of emerging PFOS alternatives in developing zebrafish. Environmental science & technology. 53(22):13427-13439
Wienholds, E., Kloosterman, W.P., Miska, E., Alvarez-Saavedra, E., Berezikov, E., de Bruijn, E., Horvitz, R.H., Kauppinen, S., and Plasterk, R.H. (2005) MicroRNA Expression in Zebrafish Embryonic Development. Science (New York, N.Y.). 309(5732):310-311
Yin, V.P., Lepilina, A., Smith, A., and Poss, K.D. (2012) Regulation of zebrafish heart regeneration by miR-133. Developmental Biology. 365(2):319-327
Yin, V.P., Thomson, J.M., Thummel, R., Hyde, D.R., Hammond, S.M., and Poss, K.D. (2008) Fgf-dependent depletion of microRNA-133 promotes appendage regeneration in zebrafish. Genes & Development. 22(6):728-733
Desvignes, T., Bardou, P., Montfort, J., Sydes, J., Guyomar, C., George, S., Postlethwait, J.H., Bobe, J. (2022) FishmiRNA: An evolutionarily supported microRNA annotation and expression database for ray-finned fishes. Molecular Biology and Evolution. 39(2)
Martínez, R., Tu, W., Eng, T., Allaire-Leung, M., Piña, B., Navarro-Martín, L., Mennigen, J.A. (2020) Acute and long-term metabolic consequences of early developmental Bisphenol A exposure in zebrafish (Danio rerio). Chemosphere. 256:127080
Romano, N., Ceci, M. (2020) Are microRNAs responsible for cardiac hypertrophy in fish and mammals? What we can learn in the activation process in a zebrafish ex vivo model. Biochimica et biophysica acta. Molecular basis of disease. 1866(11):165896
Desvignes, T., Batzel, P., Sydes, J., Eames, B.F., Postlethwait, J.H. (2019) miRNA analysis with Prost! reveals evolutionary conservation of organ-enriched expression and post-transcriptional modifications in three-spined stickleback and zebrafish. Scientific Reports. 9:3913
Duran, B.O.D.S., Dal-Pai-Silva, M., Garcia de la Serrana, D. (2019) Rainbow trout slow myoblast cell culture as a model to study slow skeletal muscle and the characterization of
mir-133
and
mir-499
families as a case study. The Journal of experimental biology. 223(Pt 2):
Tu, W., Mart Iacute Nez L Oacute Pez, R.E.N.F., Navarro-Martin, L., Kostyniuk, D.J., Hum, C., Huang, J., Deng, M., Jin, Y., Chan, H.M., Mennigen, J. (2019) Bioconcentration and metabolic effects of emerging PFOS alternatives in developing zebrafish. Environmental science & technology. 53(22):13427-13439
Dardis, G., Tryon, R., Ton, Q., Johnson, S.L., Iovine, M.K. (2017) Cx43 suppresses evx1 expression to regulate joint initiation in the regenerating fin. Developmental Dynamics : an official publication of the American Association of Anatomists. 246(9):691-699
King, B.L., Yin, V.P. (2016) A Conserved MicroRNA Regulatory Circuit Is Differentially Controlled during Limb/Appendage Regeneration. PLoS One. 11:e0157106
Beauchemin, M., Smith, A., Yin, V.P. (2015) Dynamic microRNA-101a and Fosab expression controls zebrafish heart regeneration. Development (Cambridge, England). 142:4026-37
Nachtigall, P., Dias, M., Pinhal, D. (2014) Evolution and genomic organization of muscle microRNAs in fish genomes. BMC Evolutionary Biology. 14:196
Yin, V.P., Lepilina, A., Smith, A., and Poss, K.D. (2012) Regulation of zebrafish heart regeneration by miR-133. Developmental Biology. 365(2):319-327
Mallappa, C., Nasipak, B.T., Etheridge, L., Androphy, E.J., Jones, S.N., Sagerström, C.G., Ohkawa, Y., and Imbalzano, A.N. (2010) Myogenic microRNA expression requires ATP-dependent chromatin remodeling enzyme function. Molecular and cellular biology. 30(13):3176-3186
Mishima, Y., Abreu-Goodger, C., Staton, A.A., Stahlhut, C., Shou, C., Cheng, C., Gerstein, M., Enright, A.J., and Giraldez, A.J. (2009) Zebrafish miR-1 and miR-133 shape muscle gene expression and regulate sarcomeric actin organization. Genes & Development. 23(5):619-632
Yin, V.P., Thomson, J.M., Thummel, R., Hyde, D.R., Hammond, S.M., and Poss, K.D. (2008) Fgf-dependent depletion of microRNA-133 promotes appendage regeneration in zebrafish. Genes & Development. 22(6):728-733
Wienholds, E., Kloosterman, W.P., Miska, E., Alvarez-Saavedra, E., Berezikov, E., de Bruijn, E., Horvitz, R.H., Kauppinen, S., and Plasterk, R.H. (2005) MicroRNA Expression in Zebrafish Embryonic Development. Science (New York, N.Y.). 309(5732):310-311
Additional Citations (5):
Zebrafish Nomenclature Committee (2003) Nomenclature Data Curation (2003-2010). Nomenclature Committee Submission.
ZFIN Staff (2019) Semi-automated association of ENSDARG and ENSDART identifiers with ZFIN genes and transcripts. Semi-automated Curation.
ZFIN Staff (2008) Curation of miRBase Links. Automated Data Submission.
ZFIN Staff (2023) Curation of NCBI Gene Data Via Shared Ensembl IDs (Supplemental NCBI Load). Automated Data Submission.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
ZFIN Staff (2023) Curation of NCBI Gene Data Via Shared Ensembl IDs (Supplemental NCBI Load). Automated Data Submission.
ZFIN Staff (2019) Semi-automated association of ENSDARG and ENSDART identifiers with ZFIN genes and transcripts. Semi-automated Curation.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
ZFIN Staff (2008) Curation of miRBase Links. Automated Data Submission.
Zebrafish Nomenclature Committee (2003) Nomenclature Data Curation (2003-2010). Nomenclature Committee Submission.
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