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ZFIN ID:
ZDB-MRPHLNO-080325-4
CITATIONS
(17 total)
Morpholino Name:
MO2-myd88
Morpholino Symbol:
MO2-myd88
Bates, J.M., Akerlund, J., Mittge, E., and Guillemin, K. (2007) Intestinal alkaline phosphatase detoxifies lipopolysaccharide and prevents inflammation in zebrafish in response to the gut microbiota. Cell Host & Microbe. 2(6):371-382
Cafora, M., Brix, A., Forti, F., Loberto, N., Aureli, M., Briani, F., Pistocchi, A. (2020) Phages as immunomodulators and their promising use as anti-inflammatory agents in a cftr loss-of-function zebrafish model. Journal of cystic fibrosis : official journal of the European Cystic Fibrosis Society. 20(6):1046-1052
Cambier, C.J., Banik, S.M., Buonomo, J.A., Bertozzi, C.R. (2020) Spreading of a mycobacterial cell surface lipid into host epithelial membranes promotes infectivity. eLIFE. 9:
Cambier, C.J., O'Leary, S.M., O'Sullivan, M.P., Keane, J., Ramakrishnan, L. (2017) Phenolic Glycolipid Facilitates Mycobacterial Escape from Microbicidal Tissue-Resident Macrophages. Immunity. 47(3):552-565.e4
Cambier, C.J., Takaki, K.K., Larson, R.P., Hernandez, R.E., Tobin, D.M., Urdahl, K.B., Cosma, C.L., and Ramakrishnan, L. (2014) Mycobacteria manipulate macrophage recruitment through coordinated use of membrane lipids. Nature. 505(7482):218-222
Cheesman, S.E., Neal, J.T., Mittge, E., Seredick, B.M., and Guillemin, K. (2011) Epithelial cell proliferation in the developing zebrafish intestine is regulated by the Wnt pathway and microbial signaling via Myd88. Proceedings of the National Academy of Sciences of the United States of America. 108(Suppl 1):4570-4577
Fehr, A.G., Ruetten, M., Seth-Smith, H.M., Nufer, L., Voegtlin, A., Lehner, A., Greub, G., Crosier, P.S., Neuhauss, S.C., Vaughan, L. (2016) A Zebrafish Model for
Chlamydia
Infection with the Obligate Intracellular Pathogen
Waddlia chondrophila
.. Frontiers in microbiology. 7:1829
Kanther, M., Sun, X., Mühlbauer, M., Mackey, L.C., Flynn, E.J., Bagnat, M., Jobin, C., and Rawls, J.F. (2011) Microbial colonization induces dynamic temporal and spatial patterns of NF-kappaB activation in the zebrafish digestive tract. Gastroenterology. 141(1):197-207
Madigan, C.A., Cambier, C.J., Kelly-Scumpia, K.M., Scumpia, P.O., Cheng, T.Y., Zailaa, J., Bloom, B.R., Moody, D.B., Smale, S.T., Sagasti, A., Modlin, R.L., Ramakrishnan, L. (2017) A Macrophage Response to Mycobacterium leprae Phenolic Glycolipid Initiates Nerve Damage in Leprosy. Cell. 170:973-985.e10
Mesureur, J., Feliciano, J.R., Wagner, N., Gomes, M.C., Zhang, L., Blanco-Gonzalez, M., van der Vaart, M., O'Callaghan, D., Meijer, A.H., Vergunst, A.C. (2017) Macrophages, but not neutrophils, are critical for proliferation of Burkholderia cenocepacia and ensuing host-damaging inflammation. PLoS pathogens. 13:e1006437
Peña, O.A., Lubin, A., Hockings, C., Rowell, J., Jung, Y., Hoade, Y., Dace, P.E.I., Valdivia, L.E., Tuschl, K., Boiers, C., Virgilio, M., Richardson, S.E., Payne, E.M. (2021) TLR7 ligation augments hematopoiesis in Rps14 (uS11) deficiency via paradoxical suppression of inflammatory signalling. Blood advances. 5(20):4112-4124
Rosowski, E.E., Raffa, N., Knox, B.P., Golenberg, N., Keller, N.P., Huttenlocher, A. (2018) Macrophages inhibit Aspergillus fumigatus germination and neutrophil-mediated fungal killing. PLoS pathogens. 14:e1007229
Troll, J.V., Hamilton, M.K., Abel, M.L., Ganz, J., Bates, J.M., Stephens, W.Z., Melancon, E., van der Vaart, M., Meijer, A.H., Distel, M., Eisen, J.S., Guillemin, K. (2018) Microbiota promote secretory cell determination in the intestinal epithelium by modulating host Notch signaling. Development (Cambridge, England). 145(4)
van der Vaart, M., Korbee, C.J., Lamers, G.E., Tengeler, A.C., Hosseini, R., Haks, M.C., Ottenhoff, T.H., Spaink, H.P., Meijer, A.H. (2014) The DNA Damage-Regulated Autophagy Modulator DRAM1 Links Mycobacterial Recognition via TLR-MYD88 to Autophagic Defense. Cell Host & Microbe. 15(6):753-767
van der Vaart, M., van Soest, J.J., Spaink, H.P., and Meijer, A.H. (2013) Functional analysis of a zebrafish myd88 mutant identifies key transcriptional components of the innate immune system. Disease models & mechanisms. 6(3):841-54
Yan, B., Han, P., Pan, L., Lu, W., Xiong, J., Zhang, M., Zhang, W., Li, L., Wen, Z. (2014) Il-1beta and Reactive Oxygen Species Differentially Regulate Neutrophil Directional Migration and Basal Random Motility in a Zebrafish Injury-Induced Inflammation Model. Journal of immunology (Baltimore, Md. : 1950). 192(12):5998-6008
Yang, L., Jiménez, J.A., Earley, A.M., Hamlin, V., Kwon, V., Dixon, C.T., Shiau, C.E. (2020) Drainage of inflammatory macromolecules from brain to periphery targets the liver for macrophage infiltration. eLIFE. 9:
Peña, O.A., Lubin, A., Hockings, C., Rowell, J., Jung, Y., Hoade, Y., Dace, P.E.I., Valdivia, L.E., Tuschl, K., Boiers, C., Virgilio, M., Richardson, S.E., Payne, E.M. (2021) TLR7 ligation augments hematopoiesis in Rps14 (uS11) deficiency via paradoxical suppression of inflammatory signalling. Blood advances. 5(20):4112-4124
Cafora, M., Brix, A., Forti, F., Loberto, N., Aureli, M., Briani, F., Pistocchi, A. (2020) Phages as immunomodulators and their promising use as anti-inflammatory agents in a cftr loss-of-function zebrafish model. Journal of cystic fibrosis : official journal of the European Cystic Fibrosis Society. 20(6):1046-1052
Cambier, C.J., Banik, S.M., Buonomo, J.A., Bertozzi, C.R. (2020) Spreading of a mycobacterial cell surface lipid into host epithelial membranes promotes infectivity. eLIFE. 9:
Yang, L., Jiménez, J.A., Earley, A.M., Hamlin, V., Kwon, V., Dixon, C.T., Shiau, C.E. (2020) Drainage of inflammatory macromolecules from brain to periphery targets the liver for macrophage infiltration. eLIFE. 9:
Rosowski, E.E., Raffa, N., Knox, B.P., Golenberg, N., Keller, N.P., Huttenlocher, A. (2018) Macrophages inhibit Aspergillus fumigatus germination and neutrophil-mediated fungal killing. PLoS pathogens. 14:e1007229
Troll, J.V., Hamilton, M.K., Abel, M.L., Ganz, J., Bates, J.M., Stephens, W.Z., Melancon, E., van der Vaart, M., Meijer, A.H., Distel, M., Eisen, J.S., Guillemin, K. (2018) Microbiota promote secretory cell determination in the intestinal epithelium by modulating host Notch signaling. Development (Cambridge, England). 145(4)
Cambier, C.J., O'Leary, S.M., O'Sullivan, M.P., Keane, J., Ramakrishnan, L. (2017) Phenolic Glycolipid Facilitates Mycobacterial Escape from Microbicidal Tissue-Resident Macrophages. Immunity. 47(3):552-565.e4
Madigan, C.A., Cambier, C.J., Kelly-Scumpia, K.M., Scumpia, P.O., Cheng, T.Y., Zailaa, J., Bloom, B.R., Moody, D.B., Smale, S.T., Sagasti, A., Modlin, R.L., Ramakrishnan, L. (2017) A Macrophage Response to Mycobacterium leprae Phenolic Glycolipid Initiates Nerve Damage in Leprosy. Cell. 170:973-985.e10
Mesureur, J., Feliciano, J.R., Wagner, N., Gomes, M.C., Zhang, L., Blanco-Gonzalez, M., van der Vaart, M., O'Callaghan, D., Meijer, A.H., Vergunst, A.C. (2017) Macrophages, but not neutrophils, are critical for proliferation of Burkholderia cenocepacia and ensuing host-damaging inflammation. PLoS pathogens. 13:e1006437
Fehr, A.G., Ruetten, M., Seth-Smith, H.M., Nufer, L., Voegtlin, A., Lehner, A., Greub, G., Crosier, P.S., Neuhauss, S.C., Vaughan, L. (2016) A Zebrafish Model for
Chlamydia
Infection with the Obligate Intracellular Pathogen
Waddlia chondrophila
.. Frontiers in microbiology. 7:1829
Cambier, C.J., Takaki, K.K., Larson, R.P., Hernandez, R.E., Tobin, D.M., Urdahl, K.B., Cosma, C.L., and Ramakrishnan, L. (2014) Mycobacteria manipulate macrophage recruitment through coordinated use of membrane lipids. Nature. 505(7482):218-222
van der Vaart, M., Korbee, C.J., Lamers, G.E., Tengeler, A.C., Hosseini, R., Haks, M.C., Ottenhoff, T.H., Spaink, H.P., Meijer, A.H. (2014) The DNA Damage-Regulated Autophagy Modulator DRAM1 Links Mycobacterial Recognition via TLR-MYD88 to Autophagic Defense. Cell Host & Microbe. 15(6):753-767
Yan, B., Han, P., Pan, L., Lu, W., Xiong, J., Zhang, M., Zhang, W., Li, L., Wen, Z. (2014) Il-1beta and Reactive Oxygen Species Differentially Regulate Neutrophil Directional Migration and Basal Random Motility in a Zebrafish Injury-Induced Inflammation Model. Journal of immunology (Baltimore, Md. : 1950). 192(12):5998-6008
van der Vaart, M., van Soest, J.J., Spaink, H.P., and Meijer, A.H. (2013) Functional analysis of a zebrafish myd88 mutant identifies key transcriptional components of the innate immune system. Disease models & mechanisms. 6(3):841-54
Cheesman, S.E., Neal, J.T., Mittge, E., Seredick, B.M., and Guillemin, K. (2011) Epithelial cell proliferation in the developing zebrafish intestine is regulated by the Wnt pathway and microbial signaling via Myd88. Proceedings of the National Academy of Sciences of the United States of America. 108(Suppl 1):4570-4577
Kanther, M., Sun, X., Mühlbauer, M., Mackey, L.C., Flynn, E.J., Bagnat, M., Jobin, C., and Rawls, J.F. (2011) Microbial colonization induces dynamic temporal and spatial patterns of NF-kappaB activation in the zebrafish digestive tract. Gastroenterology. 141(1):197-207
Bates, J.M., Akerlund, J., Mittge, E., and Guillemin, K. (2007) Intestinal alkaline phosphatase detoxifies lipopolysaccharide and prevents inflammation in zebrafish in response to the gut microbiota. Cell Host & Microbe. 2(6):371-382
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