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ZFIN ID:
ZDB-GENE-100922-280
CITATIONS
(63 total)
Gene Name:
CD4-1 molecule
Gene Symbol:
cd4-1
Amanda, S., Tan, T.K., Ong, J.Z.L., Theardy, M.S., Wong, R.W.J., Huang, X.Z., Ali, M.Z., Li, Y., Gong, Z., Inagaki, H., Foo, E.Y., Pang, B., Tan, S.Y., Iida, S., Sanda, T. (2022) IRF4 drives clonal evolution and lineage choice in a zebrafish model of T-cell lymphoma. Nature communications. 13:2420
Athanasiadis, E.I., Botthof, J.G., Andres, H., Ferreira, L., Lio, P., Cvejic, A. (2017) Single-cell RNA-sequencing uncovers transcriptional states and fate decisions in haematopoiesis. Nature communications. 8:2045
Basheer, F., Bulleeraz, V., Ngo, V.Q.T., Liongue, C., Ward, A.C. (2022) In vivo impact of JAK3 A573V mutation revealed using zebrafish. Cellular and molecular life sciences : CMLS. 79:322
Basheer, F., Lee, E., Liongue, C., Ward, A.C. (2022) Zebrafish Model of Severe Combined Immunodeficiency (SCID) Due to JAK3 Mutation. Biomolecules. 12(10):
Blackburn, J.S., Liu, S., Wilder, J.L., Dobrinski, K.P., Lobbardi, R., Moore, F.E., Martinez, S.A., Chen, E.Y., Lee, C., Langenau, D.M. (2014) Clonal evolution enhances leukemia-propagating cell frequency in T cell acute lymphoblastic leukemia through Akt/mTORC1 pathway activation. Cancer Cell. 25:366-78
Borga, C., Park, G., Foster, C., Burroughs-Garcia, J., Marchesin, M., Shah, R., Hasan, A., Ahmed, S.T., Bresolin, S., Batchelor, L., Scordino, T., Miles, R.R., Te Kronnie, G., Regens, J.L., Frazer, J.K. (2018) Simultaneous B and T cell acute lymphoblastic leukemias in zebrafish driven by transgenic MYC: implications for oncogenesis and lymphopoiesis. Leukemia. 33(2):333-347
Chi, Y., Huang, Z., Chen, Q., Xiong, X., Chen, K., Xu, J., Zhang, Y., Zhang, W. (2018) Loss of
runx1
function results in B cell immunodeficiency but not T cell in adult zebrafish.. Open Biology. 8(7):
Cornet, V., Douxfils, J., Mandiki, S.N.M., Kestemont, P. (2020) Early-life infection with a bacterial pathogen increases expression levels of innate immunity related genes during adulthood in zebrafish. Developmental and comparative immunology. 108:103672
Coronado, M., Solis, C.J., Hernandez, P.P., Feijóo, C.G. (2019) Soybean Meal-Induced Intestinal Inflammation in Zebrafish Is T Cell-Dependent and Has a Th17 Cytokine Profile. Frontiers in immunology. 10:610
Dee, C.T., Nagaraju, R.T., Athanasiadis, E.I., Gray, C., Fernandez Del Ama, L., Johnston, S.A., Secombes, C.J., Cvejic, A., Hurlstone, A.F. (2016) CD4-Transgenic Zebrafish Reveal Tissue-Resident Th2- and Regulatory T Cell-like Populations and Diverse Mononuclear Phagocytes. Journal of immunology (Baltimore, Md. : 1950). 197(9):3520-3530
Ferrero, G., Gomez, E., Iyer, S., Rovira, M., Miserocchi, M., Langenau, D.M., Bertrand, J.Y., Wittamer, V. (2020) The macrophage-expressed gene (mpeg) 1 identifies a subpopulation of B cells in the adult zebrafish. Journal of Leukocyte Biology. 107(3):431-443
Gao, Y., Wu, H., Wang, Q., Qu, J., Liu, Q., Xiao, J., Zhang, Y. (2014) A live attenuated combination vaccine evokes effective immune-mediated protection against Edwardsiella tarda and Vibrio anguillarum. Vaccine. 32(45):5937-44
García-Valtanen, P., Martínez-López, A., López-Muñoz, A., Bello-Perez, M., Medina-Gali, R.M., Ortega-Villaizán, M.D., Varela, M., Figueras, A., Mulero, V., Novoa, B., Estepa, A., Coll, J. (2017) Zebra Fish Lacking Adaptive Immunity Acquire an Antiviral Alert State Characterized by Upregulated Gene Expression of Apoptosis, Multigene Families, and Interferon-Related Genes. Frontiers in immunology. 8:121
Harjula, S.E., Ojanen, M.J.T., Taavitsainen, S., Nykter, M., Rämet, M. (2018) Interleukin 10 mutant zebrafish have an enhanced interferon gamma response and improved survival against a Mycobacterium marinum infection. Scientific Reports. 8:10360
Hong, Y., Hu, C.B., Bai, J., Fan, D.D., Lin, A.F., Xiang, L.X., Shao, J.Z. (2023) Essential role of an ERV-derived Env38 protein in adaptive humoral immunity against an exogenous SVCV infection in a zebrafish model. PLoS pathogens. 19:e1011222e1011222
Hui, S.P., Sheng, D.Z., Sugimoto, K., Gonzalez-Rajal, A., Nakagawa, S., Hesselson, D., Kikuchi, K. (2017) Zebrafish Regulatory T Cells Mediate Organ-Specific Regenerative Programs. Developmental Cell. 43:659-672.e5
Jensen, H.M., Korbut, R., Kania, P.W., Buchmann, K. (2018) Cannabidiol effects on behaviour and immune gene expression in zebrafish (Danio rerio). PLoS One. 13:e0200016
Ji, J.F., Hu, C.B., Shao, T., Fan, D.D., Zhang, N., Lin, A.F., Xiang, L.X., Shao, J.Z. (2020) Differential immune responses of immunoglobulin Z subclass members in antibacterial immunity in a zebrafish model. Immunology. 162(1):105-120
Jung, I.H., Choi, J.H., Chung, Y.Y., Lim, G.L., Park, Y.N., Park, S.W. (2015) Predominant Activation of JAK/STAT3 Pathway by Interleukin-6 Is Implicated in Hepatocarcinogenesis. Neoplasia (New York, N.Y.). 17:586-97
Kasheta, M., Painter, C.A., Moore, F.E., Lobbardi, R., Bryll, A., Freiman, E., Stachura, D., Rogers, A.B., Houvras, Y., Langenau, D.M., Ceol, C.J. (2017) Identification and characterization of T reg-like cells in zebrafish. The Journal of experimental medicine. 214(12):3519-3530
Lai, C.Y., Yeh, K.Y., Liu, B.F., Chang, T.M., Chang, C.H., Liao, Y.F., Liu, Y.W., Her, G.M. (2021) MicroRNA-21 Plays Multiple Oncometabolic Roles in Colitis-Associated Carcinoma and Colorectal Cancer via the PI3K/AKT, STAT3, and PDCD4/TNF-α Signaling Pathways in Zebrafish. Cancers. 13(21):
Leong, W.Z., Tan, S.H., Ngoc, P.C.T., Amanda, S., Yam, A.W.Y., Liau, W.S., Gong, Z., Lawton, L.N., Tenen, D.G., Sanda, T. (2018) ARID5B as a critical downstream target of the TAL1 complex that activates the oncogenic transcriptional program and promotes T-cell leukemogenesis. Genes & Development. 31(23-24):2343-2360
Lin, X., Zhou, Q., Zhao, C., Lin, G., Xu, J., Wen, Z. (2019) An Ectoderm-Derived Myeloid-like Cell Population Functions as Antigen Transporters for Langerhans Cells in Zebrafish Epidermis. Developmental Cell. 49(4):605-617.e5
Liu, X., Wu, H., Liu, Q., Wang, Q., Xiao, J., Chang, X., Zhang, Y. (2015) Profiling immune response in zebrafish intestine, skin, spleen and kidney bath-vaccinated with a live attenuated Vibrio anguillarum vaccine. Fish & shellfish immunology. 45(2):342-5
Miyazawa, R., Matsuura, Y., Shibasaki, Y., Imamura, S., Nakanishi, T. (2016) Cross-reactivity of monoclonal antibodies against CD4-1 and CD8α of ginbuna crucian carp with lymphocytes of zebrafish and other cyprinid species. Developmental and comparative immunology. 80:15-23
Moore, F.E., Garcia, E.G., Lobbardi, R., Jain, E., Tang, Q., Moore, J.C., Cortes, M., Molodtsov, A., Kasheta, M., Luo, C.C., Garcia, A.J., Mylvaganam, R., Yoder, J.A., Blackburn, J.S., Sadreyev, R.I., Ceol, C.J., North, T.E., Langenau, D.M. (2016) Single-cell transcriptional analysis of normal, aberrant, and malignant hematopoiesis in zebrafish. The Journal of experimental medicine. 213(6):979-92
Myllymäki, H., Niskanen, M., Luukinen, H., Parikka, M., Rämet, M. (2018) Identification of protective postexposure mycobacterial vaccine antigens using an immunosuppression-based reactivation model in the zebrafish. Disease models & mechanisms. 11(3)
Oliveira, M.L., Veloso, A., Garcia, E.G., Iyer, S., Pereira, C., Barreto, V.M., Langenau, D.M., Barata, J.T. (2022) Mutant IL7R collaborates with MYC to induce T-cell acute lymphoblastic leukemia. Leukemia. 36(6):1533-1540
Pereiro, P., Varela, M., Diaz-Rosales, P., Romero, A., Dios, S., Figueras, A., Novoa, B. (2015) Zebrafish Nk-lysins: first insights about their cellular and functional diversification. Developmental and comparative immunology. 51(1):148-59
Rakus, K., Mojzesz, M., Widziolek, M., Pooranachandran, N., Teitge, F., Surachetpong, W., Chadzinska, M., Steinhagen, D., Adamek, M. (2020) Antiviral response of adult zebrafish (Danio rerio) during tilapia lake virus (TiLV) infection. Fish & shellfish immunology. 101:1-8
Santos, K.O., Costa-Filho, J., Riet, J., Spagnol, K.L., Nornberg, B.F., Kütter, M.T., Tesser, M.B., Marins, L.F. (2019) Probiotic expressing heterologous phytase improves the immune system and attenuates inflammatory response in zebrafish fed with a diet rich in soybean meal. Fish & shellfish immunology. 93:652-658
Sertori, R., Jones, R., Basheer, F., Rivera, L., Dawson, S., Loke, S., Heidary, S., Dhillon, A., Liongue, C., Ward, A.C. (2022) Generation and Characterization of a Zebrafish IL-2Rγc SCID Model. International Journal of Molecular Sciences. 23(4):
Shao, T., Ji, J.F., Zheng, J.Y., Li, C., Zhu, L.Y., Fan, D.D., Lin, A.F., Xiang, L.X., Shao, J.Z. (2022) Zbtb46 Controls Dendritic Cell Activation by Reprogramming Epigenetic Regulation of
cd80/86
and
cd40
Costimulatory Signals in a Zebrafish Model. Journal of immunology (Baltimore, Md. : 1950). 208(12):2686-2701
Shin, S., Kulatunga, D.C.M., Dananjaya, S.H.S., Nikapitiya, C., Lee, J., De Zoysa, M. (2017)
Saprolegnia parasitica
Isolated from Rainbow Trout in Korea: Characterization, Anti-
Saprolegnia
Activity and Host Pathogen Interaction in Zebrafish Disease Model.. Mycobiology. 45:297-311
Sobah, M.L., Liongue, C., Ward, A.C. (2024) Stat3 regulates developmental hematopoiesis and impacts myeloid cell function via canonical and non-canonical modalities. Journal of Innate Immunity. 16(1):262-282
Sobah, M.L., Scott, A.C., Laird, M., Koole, C., Liongue, C., Ward, A.C. (2023) Socs3b regulates the development and function of innate immune cells in zebrafish. Frontiers in immunology. 14:11197271119727
Sugimoto, K., Hui, S.P., Sheng, D.Z., Nakayama, M., Kikuchi, K. (2017) Zebrafish FOXP3 is required for the maintenance of immune tolerance. Developmental and comparative immunology. 73:156-162
Sun, Z., Shen, B., Wu, H., Zhou, X., Wang, Q., Xiao, J., Zhang, Y. (2015) The secreted fructose 1,6-bisphosphate aldolase as a broad spectrum vaccine candidate against pathogenic bacteria in aquaculture. Fish & shellfish immunology. 46(2):638-47
Tandberg, J., Lagos, L., Ropstad, E., Smistad, G., Hiorth, M., Winther-Larsen, H.C. (2018) The Use of Chitosan-Coated Membrane Vesicles for Immunization Against Salmonid Rickettsial Septicemia in an Adult Zebrafish Model. Zebrafish. 15(4):372-381
Tang, Q., Iyer, S., Lobbardi, R., Moore, J.C., Chen, H., Lareau, C., Hebert, C., Shaw, M.L., Neftel, C., Suva, M.L., Ceol, C.J., Bernards, A., Aryee, M., Pinello, L., Drummond, I.A., Langenau, D.M. (2017) Dissecting hematopoietic and renal cell heterogeneity in adult zebrafish at single-cell resolution using RNA sequencing. The Journal of experimental medicine. 214(10):2875-2887
Tian, Y., Xu, J., Feng, S., He, S., Zhao, S., Zhu, L., Jin, W., Dai, Y., Luo, L., Qu, J.Y., Wen, Z. (2017) The first wave of T lymphopoiesis in zebrafish arises from aorta endothelium independent of hematopoietic stem cells. The Journal of experimental medicine. 214(11):3347-3360
Tiefenbach, J., Moll, P.R., Nelson, M.R., Hu, C., Baev, L., Kislinger, T., and Krause, H.M. (2010) A live zebrafish-based screening system for human nuclear receptor ligand and cofactor discovery. PLoS One. 5(3):e9797
Wan, F., Hu, C.B., Ma, J.X., Gao, K., Xiang, L.X., Shao, J.Z. (2017) Characterization of γδ T Cells from Zebrafish Provides Insights into Their Important Role in Adaptive Humoral Immunity. Frontiers in immunology. 7:675
Yang, D., Liu, Q., Ni, C., Li, S., Wu, H., Wang, Q., Xiao, J., and Zhang, Y. (2013) Gene expression profiling in live attenuated Edwardsiella tarda vaccine immunized and challenged zebrafish: Insights into the basic mechanisms of protection seen in immunized fish. Developmental and comparative immunology. 40(2):132-41
Yoon, S., Mitra, S., Wyse, C., Alnabulsi, A., Zou, J., Weerdenburg, E.M., van der Sar, A.M., Wang, D., Secombes, C.J., Bird, S. (2015) First Demonstration of Antigen Induced Cytokine Expression by CD4-1+ Lymphocytes in a Poikilotherm: Studies in Zebrafish (Danio rerio). PLoS One. 10:e0126378
Zhang, C., Zhang, P.Q., Guo, S., Chen, G., Zhao, Z., Wang, G.X., Zhu, B. (2020) Application of Biomimetic Cell-Derived Nanoparticles with Mannose Modification as a Novel Vaccine Delivery Platform against Teleost Fish Viral Disease. ACS biomaterials science & engineering. 6:6770-6777
Zhang, C., Zhao, Z., Jia, Y.J., Zhang, P.Q., Sun, Y., Zhou, Y.C., Wang, G.X., Zhu, B. (2023) Rationally Designed Self-Assembling Nanovaccines Elicit Robust Mucosal and Systemic Immunity against Rhabdovirus. ACS applied materials & interfaces. 16(1):228-244
Zhang, M., Wu, H., Li, X., Yang, M., Chen, T., Wang, Q., Liu, Q., and Zhang, Y. (2012) Edwardsiella tarda flagellar protein FlgD: A protective immunogen against edwardsiellosis. Vaccine. 30(26):3849-3856
Zhang, Z., Liu, W., Zhao, L., Huang, Z., Chen, X., Ma, N., Xu, J., Zhang, W., Zhang, Y. (2017) Retinoblastoma 1 protects T cell maturation from premature apoptosis by inhibiting E2F1. Development (Cambridge, England). 145(1)
Zhao, X., Liu, Y., Xie, J., Zhang, L., Zhu, Q., Su, L., Guo, C., Li, H., Wang, G., Zhang, W., Cheng, Y., Wu, N., Xia, X.Q. (2023) The manipulation of cell suspensions from zebrafish intestinal mucosa contributes to understanding enteritis. Frontiers in immunology. 14:11939771193977
Zhu, L.Y., Lin, A.F., Shao, T., Nie, L., Dong, W.R., Xiang, L.X., and Shao, J.Z. (2014) B cells in teleost fish act as pivotal initiating APCs in priming adaptive immunity: an evolutionary perspective on the origin of the B-1 cell subset and B7 molecules. Journal of immunology (Baltimore, Md. : 1950). 192(6):2699-2714
Sobah, M.L., Liongue, C., Ward, A.C. (2024) Stat3 regulates developmental hematopoiesis and impacts myeloid cell function via canonical and non-canonical modalities. Journal of Innate Immunity. 16(1):262-282
Hong, Y., Hu, C.B., Bai, J., Fan, D.D., Lin, A.F., Xiang, L.X., Shao, J.Z. (2023) Essential role of an ERV-derived Env38 protein in adaptive humoral immunity against an exogenous SVCV infection in a zebrafish model. PLoS pathogens. 19:e1011222e1011222
Sobah, M.L., Scott, A.C., Laird, M., Koole, C., Liongue, C., Ward, A.C. (2023) Socs3b regulates the development and function of innate immune cells in zebrafish. Frontiers in immunology. 14:11197271119727
Zhang, C., Zhao, Z., Jia, Y.J., Zhang, P.Q., Sun, Y., Zhou, Y.C., Wang, G.X., Zhu, B. (2023) Rationally Designed Self-Assembling Nanovaccines Elicit Robust Mucosal and Systemic Immunity against Rhabdovirus. ACS applied materials & interfaces. 16(1):228-244
Zhao, X., Liu, Y., Xie, J., Zhang, L., Zhu, Q., Su, L., Guo, C., Li, H., Wang, G., Zhang, W., Cheng, Y., Wu, N., Xia, X.Q. (2023) The manipulation of cell suspensions from zebrafish intestinal mucosa contributes to understanding enteritis. Frontiers in immunology. 14:11939771193977
Amanda, S., Tan, T.K., Ong, J.Z.L., Theardy, M.S., Wong, R.W.J., Huang, X.Z., Ali, M.Z., Li, Y., Gong, Z., Inagaki, H., Foo, E.Y., Pang, B., Tan, S.Y., Iida, S., Sanda, T. (2022) IRF4 drives clonal evolution and lineage choice in a zebrafish model of T-cell lymphoma. Nature communications. 13:2420
Basheer, F., Bulleeraz, V., Ngo, V.Q.T., Liongue, C., Ward, A.C. (2022) In vivo impact of JAK3 A573V mutation revealed using zebrafish. Cellular and molecular life sciences : CMLS. 79:322
Basheer, F., Lee, E., Liongue, C., Ward, A.C. (2022) Zebrafish Model of Severe Combined Immunodeficiency (SCID) Due to JAK3 Mutation. Biomolecules. 12(10):
Oliveira, M.L., Veloso, A., Garcia, E.G., Iyer, S., Pereira, C., Barreto, V.M., Langenau, D.M., Barata, J.T. (2022) Mutant IL7R collaborates with MYC to induce T-cell acute lymphoblastic leukemia. Leukemia. 36(6):1533-1540
Sertori, R., Jones, R., Basheer, F., Rivera, L., Dawson, S., Loke, S., Heidary, S., Dhillon, A., Liongue, C., Ward, A.C. (2022) Generation and Characterization of a Zebrafish IL-2Rγc SCID Model. International Journal of Molecular Sciences. 23(4):
Shao, T., Ji, J.F., Zheng, J.Y., Li, C., Zhu, L.Y., Fan, D.D., Lin, A.F., Xiang, L.X., Shao, J.Z. (2022) Zbtb46 Controls Dendritic Cell Activation by Reprogramming Epigenetic Regulation of
cd80/86
and
cd40
Costimulatory Signals in a Zebrafish Model. Journal of immunology (Baltimore, Md. : 1950). 208(12):2686-2701
Lai, C.Y., Yeh, K.Y., Liu, B.F., Chang, T.M., Chang, C.H., Liao, Y.F., Liu, Y.W., Her, G.M. (2021) MicroRNA-21 Plays Multiple Oncometabolic Roles in Colitis-Associated Carcinoma and Colorectal Cancer via the PI3K/AKT, STAT3, and PDCD4/TNF-α Signaling Pathways in Zebrafish. Cancers. 13(21):
Cornet, V., Douxfils, J., Mandiki, S.N.M., Kestemont, P. (2020) Early-life infection with a bacterial pathogen increases expression levels of innate immunity related genes during adulthood in zebrafish. Developmental and comparative immunology. 108:103672
Ferrero, G., Gomez, E., Iyer, S., Rovira, M., Miserocchi, M., Langenau, D.M., Bertrand, J.Y., Wittamer, V. (2020) The macrophage-expressed gene (mpeg) 1 identifies a subpopulation of B cells in the adult zebrafish. Journal of Leukocyte Biology. 107(3):431-443
Ji, J.F., Hu, C.B., Shao, T., Fan, D.D., Zhang, N., Lin, A.F., Xiang, L.X., Shao, J.Z. (2020) Differential immune responses of immunoglobulin Z subclass members in antibacterial immunity in a zebrafish model. Immunology. 162(1):105-120
Rakus, K., Mojzesz, M., Widziolek, M., Pooranachandran, N., Teitge, F., Surachetpong, W., Chadzinska, M., Steinhagen, D., Adamek, M. (2020) Antiviral response of adult zebrafish (Danio rerio) during tilapia lake virus (TiLV) infection. Fish & shellfish immunology. 101:1-8
Zhang, C., Zhang, P.Q., Guo, S., Chen, G., Zhao, Z., Wang, G.X., Zhu, B. (2020) Application of Biomimetic Cell-Derived Nanoparticles with Mannose Modification as a Novel Vaccine Delivery Platform against Teleost Fish Viral Disease. ACS biomaterials science & engineering. 6:6770-6777
Coronado, M., Solis, C.J., Hernandez, P.P., Feijóo, C.G. (2019) Soybean Meal-Induced Intestinal Inflammation in Zebrafish Is T Cell-Dependent and Has a Th17 Cytokine Profile. Frontiers in immunology. 10:610
Lin, X., Zhou, Q., Zhao, C., Lin, G., Xu, J., Wen, Z. (2019) An Ectoderm-Derived Myeloid-like Cell Population Functions as Antigen Transporters for Langerhans Cells in Zebrafish Epidermis. Developmental Cell. 49(4):605-617.e5
Santos, K.O., Costa-Filho, J., Riet, J., Spagnol, K.L., Nornberg, B.F., Kütter, M.T., Tesser, M.B., Marins, L.F. (2019) Probiotic expressing heterologous phytase improves the immune system and attenuates inflammatory response in zebrafish fed with a diet rich in soybean meal. Fish & shellfish immunology. 93:652-658
Borga, C., Park, G., Foster, C., Burroughs-Garcia, J., Marchesin, M., Shah, R., Hasan, A., Ahmed, S.T., Bresolin, S., Batchelor, L., Scordino, T., Miles, R.R., Te Kronnie, G., Regens, J.L., Frazer, J.K. (2018) Simultaneous B and T cell acute lymphoblastic leukemias in zebrafish driven by transgenic MYC: implications for oncogenesis and lymphopoiesis. Leukemia. 33(2):333-347
Chi, Y., Huang, Z., Chen, Q., Xiong, X., Chen, K., Xu, J., Zhang, Y., Zhang, W. (2018) Loss of
runx1
function results in B cell immunodeficiency but not T cell in adult zebrafish.. Open Biology. 8(7):
Harjula, S.E., Ojanen, M.J.T., Taavitsainen, S., Nykter, M., Rämet, M. (2018) Interleukin 10 mutant zebrafish have an enhanced interferon gamma response and improved survival against a Mycobacterium marinum infection. Scientific Reports. 8:10360
Jensen, H.M., Korbut, R., Kania, P.W., Buchmann, K. (2018) Cannabidiol effects on behaviour and immune gene expression in zebrafish (Danio rerio). PLoS One. 13:e0200016
Leong, W.Z., Tan, S.H., Ngoc, P.C.T., Amanda, S., Yam, A.W.Y., Liau, W.S., Gong, Z., Lawton, L.N., Tenen, D.G., Sanda, T. (2018) ARID5B as a critical downstream target of the TAL1 complex that activates the oncogenic transcriptional program and promotes T-cell leukemogenesis. Genes & Development. 31(23-24):2343-2360
Myllymäki, H., Niskanen, M., Luukinen, H., Parikka, M., Rämet, M. (2018) Identification of protective postexposure mycobacterial vaccine antigens using an immunosuppression-based reactivation model in the zebrafish. Disease models & mechanisms. 11(3)
Tandberg, J., Lagos, L., Ropstad, E., Smistad, G., Hiorth, M., Winther-Larsen, H.C. (2018) The Use of Chitosan-Coated Membrane Vesicles for Immunization Against Salmonid Rickettsial Septicemia in an Adult Zebrafish Model. Zebrafish. 15(4):372-381
Athanasiadis, E.I., Botthof, J.G., Andres, H., Ferreira, L., Lio, P., Cvejic, A. (2017) Single-cell RNA-sequencing uncovers transcriptional states and fate decisions in haematopoiesis. Nature communications. 8:2045
García-Valtanen, P., Martínez-López, A., López-Muñoz, A., Bello-Perez, M., Medina-Gali, R.M., Ortega-Villaizán, M.D., Varela, M., Figueras, A., Mulero, V., Novoa, B., Estepa, A., Coll, J. (2017) Zebra Fish Lacking Adaptive Immunity Acquire an Antiviral Alert State Characterized by Upregulated Gene Expression of Apoptosis, Multigene Families, and Interferon-Related Genes. Frontiers in immunology. 8:121
Hui, S.P., Sheng, D.Z., Sugimoto, K., Gonzalez-Rajal, A., Nakagawa, S., Hesselson, D., Kikuchi, K. (2017) Zebrafish Regulatory T Cells Mediate Organ-Specific Regenerative Programs. Developmental Cell. 43:659-672.e5
Kasheta, M., Painter, C.A., Moore, F.E., Lobbardi, R., Bryll, A., Freiman, E., Stachura, D., Rogers, A.B., Houvras, Y., Langenau, D.M., Ceol, C.J. (2017) Identification and characterization of T reg-like cells in zebrafish. The Journal of experimental medicine. 214(12):3519-3530
Shin, S., Kulatunga, D.C.M., Dananjaya, S.H.S., Nikapitiya, C., Lee, J., De Zoysa, M. (2017)
Saprolegnia parasitica
Isolated from Rainbow Trout in Korea: Characterization, Anti-
Saprolegnia
Activity and Host Pathogen Interaction in Zebrafish Disease Model.. Mycobiology. 45:297-311
Sugimoto, K., Hui, S.P., Sheng, D.Z., Nakayama, M., Kikuchi, K. (2017) Zebrafish FOXP3 is required for the maintenance of immune tolerance. Developmental and comparative immunology. 73:156-162
Tang, Q., Iyer, S., Lobbardi, R., Moore, J.C., Chen, H., Lareau, C., Hebert, C., Shaw, M.L., Neftel, C., Suva, M.L., Ceol, C.J., Bernards, A., Aryee, M., Pinello, L., Drummond, I.A., Langenau, D.M. (2017) Dissecting hematopoietic and renal cell heterogeneity in adult zebrafish at single-cell resolution using RNA sequencing. The Journal of experimental medicine. 214(10):2875-2887
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Additional Citations (12):
Gaudet, P., Livstone, M., Thomas, P., The Reference Genome Project (2010) Annotation inferences using phylogenetic trees. Automated Data Submission.
ZFIN Staff (2006) Curation of Ensembl Database Links. Automated Data Submission.
ZFIN Staff (2003) Curation of orthology data. Manually curated data.
ZFIN Staff (2002) Curation of NCBI Gene Data Via Shared RNA Sequence IDs. Automated Data Submission.
ZFIN Staff (2002) Gene Ontology Annotation Through Association of UniProt Keywords with GO Terms. Automated Data Submission.
ZFIN Staff (2017) Curation of PANTHER Gene IDs. Automated Data Submission.
ZFIN Staff (2003) Curation of VEGA Database Links. Automated Data Submission.
ZFIN Staff (2024) Association of Ensembl transcripts with ZFIN genes. Semi-automated Curation.
ZFIN Staff (2013) Semi-automated association of ENSDARG identifiers with ZFIN genes for the ZMP project. Semi-automated Curation.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
ZFIN Staff (2023) Automated Curation of UniProt Database Links. Automated Data Submission.
ZFIN Staff (2020) Addition of links from ZFIN to Expression Atlas. Semi-automated Curation.
ZFIN Staff (2024) Association of Ensembl transcripts with ZFIN genes. Semi-automated Curation.
ZFIN Staff (2023) Automated Curation of UniProt Database Links. Automated Data Submission.
ZFIN Staff (2020) Addition of links from ZFIN to Expression Atlas. Semi-automated Curation.
ZFIN Staff (2017) Curation of PANTHER Gene IDs. Automated Data Submission.
ZFIN Staff (2017) Curation of Alliance of Genome Resources Database Links. Automated Data Submission.
ZFIN Staff (2013) Semi-automated association of ENSDARG identifiers with ZFIN genes for the ZMP project. Semi-automated Curation.
Gaudet, P., Livstone, M., Thomas, P., The Reference Genome Project (2010) Annotation inferences using phylogenetic trees. Automated Data Submission.
ZFIN Staff (2006) Curation of Ensembl Database Links. Automated Data Submission.
ZFIN Staff (2003) Curation of VEGA Database Links. Automated Data Submission.
ZFIN Staff (2003) Curation of orthology data. Manually curated data.
ZFIN Staff (2002) Gene Ontology Annotation Through Association of UniProt Keywords with GO Terms. Automated Data Submission.
ZFIN Staff (2002) Curation of NCBI Gene Data Via Shared RNA Sequence IDs. Automated Data Submission.
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