[1] |
Anderl, I., Vesala, L., Ihalainen, T.O., Vanha-Aho, L.M., Ando, I., Ramet, M., Hultmark, D., 2016. Transdifferentiation and proliferation in two distinct hemocyte lineages in Drosophila melanogaster larvae after wasp infection. PLoS pathog. 12, e1005746.
|
[2] |
Artero, R.D., Monferrer, L., Garcia-Lopez, A., Baylies, M.K., 2006. Serpent and a hibris reporter are co-expressed in migrating cells during Drosophila hematopoiesis and Malpighian tubule formation. Hereditas. 143, 117-122.
|
[3] |
Benes, H., Spivey, D.W., Miles, J., Neal, K., Edmondson, R.G., 1990. Fat-body-specific expression of the Drosophila Lsp-2 gene. SAAS Bull Biochem Biotechnol. 3, 129-133.
|
[4] |
Bharadwaj, R., Roy, M., Ohyama, T., Sivan-Loukianova, E., Delannoy, M., Lloyd, T.E., Zlatic, M., Eberl, D.F., Kolodkin, A.L., 2013. Cbl-associated protein regulates assembly and function of two tension-sensing structures in Drosophila. Development. 140, 627-638.
|
[5] |
Carter, L.L., Zhang, X., Dubey, C., Rogers, P., Tsui, L., Swain, S.L., 1998. Regulation of T cell subsets from naive to memory. J Immunother. 21, 181-187.
|
[6] |
Cordes, E.J., Licking-Murray, K.D., Carlson, K.A., 2013. Differential gene expression related to Nora virus infection of Drosophila melanogaster. Virus Res. 175, 95-100.
|
[7] |
Dostalova, A., Rommelaere, S., Poidevin, M., Lemaitre, B., 2017. Thioester-containing proteins regulate the Toll pathway and play a role in Drosophila defence against microbial pathogens and parasitoid wasps. BMC Bio. 15, 79.
|
[8] |
Doulatov, S., Notta, F., Eppert, K., Nguyen, L.T., Ohashi, P.S., Dick, J.E., 2010. Revised map of the human progenitor hierarchy shows the origin of macrophages and dendritic cells in early lymphoid development. Nat Immunol. 11, 585-593.
|
[9] |
Evans, C.J., Hartenstein, V., Banerjee, U., 2003. Thicker than blood: conserved mechanisms in Drosophila and vertebrate hematopoiesis. Dev Cell. 5, 673-690.
|
[10] |
Hartenstein, V., Mandal, L., 2006. The blood/vascular system in a phylogenetic perspective. BioEssays. 28, 1203-1210.
|
[11] |
Honti, V., Kurucz, E., Csordas, G., Laurinyecz, B., Markus, R., Ando, I., 2009. In vivo detection of lamellocytes in Drosophila melanogaster. Immunol Lett. 126, 83-84.
|
[12] |
Hurst, D., Rylett, C.M., Isaac, R.E., Shirras, A.D., 2003. The Drosophila angiotensin-converting enzyme homologue Ance is required for spermiogenesis. Dev Bio. 254, 238-247.
|
[13] |
Irving, P., Ubeda, J.M., Doucet, D., Troxler, L., Lagueux, M., Zachary, D., Hoffmann, J.A., Hetru, C., Meister, M., 2005. New insights into Drosophila larval haemocyte functions through genome-wide analysis. Cell Microbiol. 7, 335-350.
|
[14] |
Jennewein, C., Sowa, R., Faber, A.C., Dildey, M., von Knethen, A., Meybohm, P., Scheller, B., Drose, S., Zacharowski, K., 2015. Contribution of Ninjurin1 to Toll-like receptor 4 signaling and systemic inflammation. Am J Resp Cell Mol. 53, 656-663.
|
[15] |
Kawamoto, H., Katsura, Y., 2009. A new paradigm for hematopoietic cell lineages: revision of the classical concept of the myeloid-lymphoid dichotomy. Trends Immunol. 30, 193-200.
|
[16] |
Kemp, C., Mueller, S., Goto, A., Barbier, V., Paro, S., Bonnay, F., Dostert, C., Troxler, L., Hetru, C., Meignin, C., Pfeffer, S., Hoffmann, J.A., Imler, J.L., 2013. Broad RNA interference-mediated antiviral immunity and virus-specific inducible responses in Drosophila. J Immunol. 190, 650-658.
|
[17] |
Kocks, C., Cho, J.H., Nehme, N., Ulvila, J., Pearson, A.M., Meister, M., Strom, C., Conto, S.L., Hetru, C., Stuart, L.M., Stehle, T., Hoffmann, J.A., Reichhart, J.M., Ferrandon, D., Ramet, M., Ezekowitz, R.A., 2005. Eater, a transmembrane protein mediating phagocytosis of bacterial pathogens in Drosophila. Cell. 123, 335-346.
|
[18] |
Kulkarni, V., Khadilkar, R.J., Magadi, S.S., Inamdar, M.S., 2011. Asrij maintains the stem cell niche and controls differentiation during Drosophila lymph gland hematopoiesis. PLoS One. 6, e27667.
|
[19] |
Kurucz, E., Markus, R., Zsamboki, J., Folkl-Medzihradszky, K., Darula, Z., Vilmos, P., Udvardy, A., Krausz, I., Lukacsovich, T., Gateff, E., Zettervall, C.J., Hultmark, D., Ando, I., 2007a. Nimrod, a putative phagocytosis receptor with EGF repeats in Drosophila plasmatocytes. Curr Biol. CB 17, 649-654.
|
[20] |
Kurucz, E., Vaczi, B., Markus, R., Laurinyecz, B., Vilmos, P., Zsamboki, J., Csorba, K., Gateff, E., Hultmark, D., Ando, I., 2007b. Definition of Drosophila hemocyte subsets by cell-type specific antigens. Acta Biol Hung. 58 Suppl, 95-111.
|
[21] |
Makki, R., Meister, M., Pennetier, D., Ubeda, J.M., Braun, A., Daburon, V., Krzemien, J., Bourbon, H.M., Zhou, R., Vincent, A., Crozatier, M., 2010. A short receptor downregulates JAK/STAT signalling to control the Drosophila cellular immune response. PLoS Biol. 8, e1000441.
|
[22] |
Meldrum, N.U., Roughton, F.J., 1933. Carbonic anhydrase. Its preparation and properties. J Physiol. 80, 113-142.
|
[23] |
Nelson, R.E., Fessler, L.I., Takagi, Y., Blumberg, B., Keene, D.R., Olson, P.F., Parker, C.G., Fessler, J.H., 1994. Peroxidasin: a novel enzyme-matrix protein of Drosophila development. EMBO J. 13, 3438-3447.
|
[24] |
Page-McCaw, A., Serano, J., Sante, J.M., Rubin, G.M., 2003. Drosophila matrix metalloproteinases are required for tissue remodeling, but not embryonic development. Dev Cell. 4, 95-106.
|
[25] |
Qiu, X., Hill, A., Packer, J., Lin, D., Ma, Y.A., Trapnell, C., 2017. Single-cell mRNA quantification and differential analysis with Census. Nat methods. 14, 309-315.
|
[26] |
Rizki, T.M., Rizki, R.M., 1992. Lamellocyte differentiation in Drosophila larvae parasitized by Leptopilina. Dev Comp Immunol. 16, 103-110.
|
[27] |
Saliba, A.E., Westermann, A.J., Gorski, S.A., Vogel, J., 2014. Single-cell RNA-seq: advances and future challenges. Nucleic Acids Res. 42, 8845-8860.
|
[28] |
Sedelies, K.A., Sayers, T.J., Edwards, K.M., Chen, W., Pellicci, D.G., Godfrey, D.I., Trapani, J.A., 2004. Discordant regulation of granzyme H and granzyme B expression in human lymphocytes. J Biol Chem. 279, 26581-26587.
|
[29] |
Shokal, U., Eleftherianos, I., 2017a. The Drosophila Thioester containing Protein-4 participates in the induction of the cellular immune response to the pathogen Photorhabdus. Dev Comp Immunol. 76, 200-208.
|
[30] |
Shokal, U., Eleftherianos, I., 2017b. Thioester-Containing Protein-4 Regulates the Drosophila Immune Signaling and Function against the Pathogen Photorhabdus. J Innate Immun. 9, 83-93.
|
[31] |
Shokal, U., Kopydlowski, H., Harsh, S., Eleftherianos, I., 2018. Thioester-Containing Proteins 2 and 4 Affect the Metabolic Activity and Inflammation Response in Drosophila. Infection and immunity 86.
|
[32] |
Trapani, J.A., 2001. Granzymes: a family of lymphocyte granule serine proteases. Genome Biol. 2, reviews3014.1-reviews3014.7.
|
[33] |
Uttenweiler-Joseph, S., Moniatte, M., Lagueux, M., Van Dorsselaer, A., Hoffmann, J.A., Bulet, P., 1998. Differential display of peptides induced during the immune response of Drosophila: a matrix-assisted laser desorption ionization time-of-flight mass spectrometry study. Proc Natl Acad Sci U S A. 95, 11342-11347.
|
[34] |
Verleyen, P., Baggerman, G., D'Hertog, W., Vierstraete, E., Husson, S.J., Schoofs, L., 2006. Identification of new immune induced molecules in the haemolymph of Drosophila melanogaster by 2D-nanoLC MS/MS. J Insect Physiol. 52, 379-388.
|
[35] |
Williams, M.J., 2007. Drosophila hemopoiesis and cellular immunity. J Immunol. 178, 4711-4716.
|
[36] |
Zheng, G.X., Terry, J.M., Belgrader, P., Ryvkin, P., Bent, Z.W., Wilson, R., Ziraldo, S.B., Wheeler, T.D., McDermott, G.P., Zhu, J., Gregory, M.T., Shuga, J., Montesclaros, L., Underwood, J.G., Masquelier, D.A., Nishimura, S.Y., Schnall-Levin, M., Wyatt, P.W., Hindson, C.M., Bharadwaj, R., Wong, A., Ness, K.D., Beppu, L.W., Deeg, H.J., McFarland, C., Loeb, K.R., Valente, W.J., Ericson, N.G., Stevens, E.A., Radich, J.P., Mikkelsen, T.S., Hindson, B.J., Bielas, J.H., 2017. Massively parallel digital transcriptional profiling of single cells. Nat Commun. 8, 14049.
|