Kubota Product Identification Number
Majorie Madeiros <[email protected]> Fri, 1 Dec 2023 03:09:14 -0800 (PST)
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Toll REFERENCES Aliprantis, A. O., et al. (1999). Cell activation and apop= tosis by bacterial lipoproteins throughToll-like receptor-2. Science 285(54= 28): 736-9. PubMed Citation: 10426996Ambrosi, P., Chahda, J. S., Koslen, H.= R., Chiel, H. J. and Mizutani, C. M. (2014). Modeling of the Dorsal gradie= nt across species reveals interaction between embryo morphology and Toll si= gnaling pathway during evolution. PLoS Comput Biol 10: e1003807. PubMed ID:= 25165818Anderson, K.V., J=C3=BCrgens, G. and N=C3=BCsslein-Volhard, C. (19= 85). Establishment of dorsal-ventral polarity in the Drosophila embryo: gen= etic studies on the role of the Toll gene product. Cell 42: 779-789. PubMed= Citation: 3931918Armstrong, N. J., et al. (1998). Conserved Spatzle/Toll s= ignaling in dorsoventral patterning ofXenopus embryos. Mech. Dev. 71(1-2): = 99-105. PubMed Citation: 9507077Biemar, F., et al. (2006). Comprehensive id= entification of Drosophila dorsal-ventral patterning genes using a whole-ge= nome tiling array. Proc. Natl. Acad. Sci. 103(34): 12763-8. Medline abstrac= t: 16908844 Boutros, M., Agaisse, H. and Perrimon, N. (2002). Sequential ac= tivation of signaling pathways during innate immune responses in Drosophila= . Dev. Cell 3: 711-722. 12431377 Bowman, A. B., et al. (2000). Kinesin-depe= ndent axonal transport is mediated by the sunday driver (SYD) protein. Cell= 103: 583-594. 11106729 Burns, K., et al. (1998). MyD88, an adapter protein= involved in interleukin-1 signaling. J. Biol. Chem. 273(20): 12203-9. PubM= ed Citation: 9575168Byrd, D. T., et al. (2001). UNC-16, a JNK-signaling sca= ffold protein, regulates vesicle transport in C. elegans. Neuron 32: 787-80= 0. 11738026 Carvalho, L., Jacinto, A. and Matova, N. (2014). The Toll/NF-ka= ppaB signaling pathway is required for epidermal wound repair in Drosophila= . Proc Natl Acad Sci U S A 111(50):E5373-82. PubMed ID: 25427801Charatsi, I= ., et al. (2002). Krapfen/dMyd88 is required for the establishment of dorso= ventral pattern in the Drosophila embryo. Mech. Dev. 120: 219-226. 12559494= Chaudhary, P. M., et al. (1998). Cloning and characterization of two Toll/= Interleukin-1 receptor-like genes TIL3 and TIL4: evidence for a multi-gene = receptor family in humans. Blood 91(11): 4020-7. PubMed Citation: 9596645Ch= en, L. Y., et al. (2006). Weckle is a zinc finger adaptor of the toll pathw= ay in dorsoventral patterning of the Drosophila embryo. Curr. Biol. 16(12):= 1183-93. Medline abstract: 16782008 Choe, K. M., Werner, T., Stoven, S., H= ultmark, D. and Anderson, K. V. (2002). Requirement for a peptidoglycan rec= ognition protein (PGRP) in Relish activation and antibacterial immune respo= nses in Drosophila. Science 296: 359-362. 11872802 Chow, J. C., et al. (199= 9). Toll-like receptor-4 mediates lipopolysaccharide-induced signaltransduc= tion. J. Biol. Chem. 274(16): 10689-10692. PubMed Citation: 10196138 Coll, = O., et al. (2010). A novel, noncanonical mechanism of cytoplasmic polyadeny= lation operates in Drosophila embryogenesis. Genes Dev. 24(2): 129-34. PubM= ed Citation: 20080951Colonnetta, M. M., Lym, L. R., Wilkins, L., Kappes, G.= , Castro, E. A., Ryder, P. V., Schedl, P., Lerit, D. A. and Deshpande, G. (= 2021). Antagonism between germ cell-less and Torso receptor regulates trans= criptional quiescence underlying germline/soma distinction. Elife 10. PubMe= d ID: 33459591Creton, R., Kreiling, J. A. and Jaffe, L. F. (2000). Presence= and roles of calcium gradients alongthe dorsal-ventral axis in Drosophila = embryos. Dev. Biol. 217: 375-385. PubMed Citation: 10625561 Davidson, C., T= irouvanziam, R., Herzenberg, L. and Lipsick, J. (2004). Functional Evolutio= n of the Vertebrate Myb Gene Family: B-Myb, but neither A-Myb nor c-Myb, co= mplements Drosophila Myb in Hemocytes. Genetics 169(1): 215-29. 15489525 De= Gregorio, E., et al. (2002). The Toll and Imd pathways are the major regul= ators of the immune response in Drosophila. EMBO J. 21: 2568-2579. 12032070= Dziarski, R. (2004). Peptidoglycan recognition proteins (PGRPs). Mol. Immu= nol. 40: 877-886. 14698226 Edwards, D. N., Towb, P. and Wasserman, S. A. (1= 997). An activity-dependent network of interactions links the Rel protein D= orsal with its cytoplasmic regulators. Development 124(19): 3855-3864. PubM= ed Citation: 9367441El Chamy, L., Leclerc, V., Caldelari, I. and Reichhart,= J. M. (2008). Sensing of 'danger signals' and pathogen-associated molecula= r patterns defines binary signaling pathways 'upstream' of Toll. Nat. Immun= ol. 9: 1165-1170. PubMed Citation: 18724373Eldon, E., et al. (1994). The Dr= osophila 18 wheeler is required for morphogenesis and has striking similari= ties to Toll. Development 120: 885-899. PubMed Citation: 7600965 Engel, E.,= Viargues, P., Mortier, M., Taillebourg, E., Coute, Y., Thevenon, D. and Fa= uvarque, M. O. (2014). Identifying USPs regulating immune signals in Drosop= hila:USP2 deubiquitinates Imd and promotes its degradation by interacting w= ith the proteasome. Cell Commun Signal 12: 41. PubMed ID: 25027767Ferreira,= A. G., Naylor, H., Esteves, S. S., Pais, I. S., Martins, N. E. and Teixeir= a, L. (2014). The Toll-Dorsal pathway is required for resistance to viral o= ral infection in Drosophila. PLoS Pathog 10: e1004507. PubMed ID: 25473839G= alindo, R. L., et al. (1995). Interaction of the pelle kinase with themembr= ane-associated protein tube is required for transduction of the dorsoventra= l signal in Drosophila embryos. Development 121: 2209-2218. PubMed Citation= : 7635064 Garver, L. S., Wu, J. and Wu, L. P. (2006). The peptidoglycan rec= ognition protein PGRP-SC1a is essential for Toll signaling and phagocytosis= of Staphylococcus aureus in Drosophila. Proc. Natl. Acad. Sci. 103(3): 660= -5. 16407137 Gay, N. J., et al. (1991). A leucine-rich repeat peptide deriv= ed from theDrosophila Toll receptor forms extended filaments with abeta-she= et structure. FEBS Lett. 291 (1): 87-91. PubMed Citation: 1657640Germani, F= ., Hain, D., Sternlicht, D., Moreno, E. and Basler, K. (2018).The Toll path= way inhibits tissue growth and regulates cell fitness in aninfection-depend= ent manner. Elife 7. PubMed ID: 30451683Ghavi-Helm, Y., Jankowski, A., Meie= rs, S., Viales, R. R., Korbel, J. O. and Furlong, E. E. M. (2019). Highly r= earranged chromosomes reveal uncoupling between genome topology and gene ex= pression. Nat Genet 51(8): 1272-1282. PubMed ID: 31308546 Gillespie, S. K. = and Wasserman, S. A. (1994). Dorsal, a Drosophila Rel-like protein, is phos= phorylatedupon activation of the transmembrane protein Toll. Mol Cell Biol = 14: 3559-68. PubMed Citation: 8196601Gonzalez-Crespo, S. and Levine, M. (19= 94). Related target enhancers for dorsal and NF-kappa B signaling pathways.= Science 264: 255-8. PubMed Citation: 8146656Gottar, M., et al. (2006). Dua= l detection of fungal infections in Drosophila via recognition of glucans a= nd sensing of virulence factors. Cell 127: 1425-1437. PubMed Citation: 1719= 0605Guida, S., Heguy, A. and Melli, M. (1992). The chicken IL-1 receptor: d= ifferential evolution of thecytoplasmic and extracellular domains. Gene 111= : 239-43Halfon, M. S., Hashimoto, C. and Keshishian, H. (1995). The Drosoph= ila Toll gene functions zygotically and is necessary for proper motoneuron = and muscle development. Dev Biol 169: 151-167Halfon, M. S. and Keshishian, = H. (1998). The Toll pathway is required in the epidermis for muscledevelopm= ent in the Drosophila embryo. Dev. Biol. 199(1): 164-174Hashimoto, C., Huds= on, K. L. and Anderson, K. V. (1988). The Toll gene of Drosophila, required= for dorsal-ventralembryonic polarity, appears to encode a transmembranepro= tein. Cell 52: 269-79 Hashimoto, C., Gerttula, S. and Anderson, K. V. (1991= ). Plasma membrane localization of the Toll protein in thesyncytial Drosoph= ila embryo: importance oftransmembrane signaling for dorsal-ventral pattern= formation. Development 111: 1021-8 Heguy, A., et al. (1992). Amino acids co= nserved in interleukin-1 receptors(IL-1Rs) and the Drosophila Toll protein = are essential forIL-1R signal transduction. J Biol Chem 267: 2605-9Horng, T= . and Medzhitov, R. (2001). Drosophila MyD88 is an adapter in the Toll sign= aling pathway. Proc. Natl. Acad. Sci. 98: 12654-12658. 11606776 Horng, T., = et al. (2002). The adaptor molecule TIRAP provides signalling specificity f= or Toll-like receptors. Nature 420: 329-333. 12447442 Hu, S. and Yang, X. (= 2000). dFADD, a novel death domain-containing adapter protein for the Droso= phila caspase DREDD. J. Biol. Chem. 275: 30761-30764. 10934188 Hu, X., Yagi= , Y., Tanji, T., Zhou, S. and Ip, Y. T. (2004). Multimerization and interac= tion of Toll and Spatzle in Drosophila. Proc. Natl. Acad. Sci. 101(25): 936= 9-74. 15197269 Huang, A. M., Rusch, J., and Levine, M. (1997). An anteropos= terior Dorsal gradient in the Drosophila embryo. Genes Dev. 11(15): 1963-19= 73Huang, H. R., et al. (2010). Endocytic pathway is required for Drosophila= Toll innate immune signaling. Proc. Natl. Acad. Sci. 107(18): 8322-7. PubM= ed Citation: 20404143Hultmark, D. (1994). Macrophage differentiation marker= MyD88 is a member of theToll/IL-1 receptor family. Biochem. Biophys. Res. = Commun. 199: 144-6Inaki, M., Yoshikawa, S., Thomas, J. B., Aburatani, H. an= d Nose, A. (2007). Wnt4 is a local repulsive cue that determines synaptic t= arget specificity. Curr. Biol. 17: 1574-1579. PubMed Citation: 17764943Inak= i, M., Shinza-Kameda, M., Ismat, A., Frasch, M. and Nose, A. (2010). Drosop= hila Tey represses transcription of the repulsive cue Toll and generates ne= uromuscular target specificity. Development 137(13): 2139-46. PubMed Citati= on: 20504957Ing-Simmons, E., Vaid, R., Bing, X. Y., Levine, M., Mannervik, = M. and Vaquerizas, J. M. (2021). Independence of chromatin conformation and= gene regulation during Drosophila dorsoventral patterning. Nat Genet 53(4)= : 487-499. PubMed ID: 33795866Ji, S., Sun, M., Zheng, X., Li, L., Sun, L., = Chen, D. and Sun, Q. (2014). Cell-surface localization of Pellino antagoniz= es Toll-mediated innate immune signalling by controlling MyD88 turnover in = Drosophila. Nat Commun 5: 3458. PubMed ID: 24632597Kagan, J. C., et al. (20= 08). TRAM couples endocytosis of Toll-like receptor 4 to the induction of i= nterferon-beta. Nat. Immunol. 9: 361-368. PubMed Citation: 18297073 Kambris= , Z., et al. (2006). Drosophila immunity: A large-scale in vivo RNAi screen= identifies five serine proteases required for Toll activation. Curr. Biol.= 16: 808-813. 16631589 Katsukawa, M., Ohsawa, S., Zhang, L., Yan, Y. and Ig= aki, T. (2018). Serpin facilitates tumor-suppressive cell competition by bl= ocking Toll-mediated Yki activation in Drosophila. Curr Biol 28(11):1756-17= 67. PubMed ID: 29804808Keith, F. J. and Gay, N. J. (1990). The Drosophila m= embrane receptor Toll can function to promote cellular adhesion. EMBO J. 9:= 4299-306Kirschning, C. J., et al. (1998). Human toll-like receptor 2 confe= rs responsiveness to bacteriallipopolysaccharide. J. Exp. Med. 188(11): 209= 1-7 Kubota, K., Keith, F. J. and Gay, N. J. (1993). Relocalization of Droso= phila Dorsal protein can beinduced by a rise in cytoplasmic calcium concent= ration and the expression of constitutively active but not wild-type Toll r= eceptors. Biochem J 296 ( Pt 2): 497503Kubota, K., Keith, F. J. and Gay, N.= J. (1995). Wild type and constitutively activated forms of the Drosophila = Toll receptor have different patterns ofN-linked glycosylation. FEBS Lett 3= 65: 83-86Lagueux, M., et al. (2000). Constitutive expression of a complemen= t-like protein in Toll and JAKgain-of-function mutants of Drosophila. Proc.= Natl. Acad. Sci. 97: 11427-11432Larrain, J., et al. (2000). BMP-binding mo= dules in chordin: a model for signalling regulation in the extracellular sp= ace. Development 127: 821-830 Leatherman, J. L., Levin, L., Boero, J. and J= ongens, T. A. (2002). germ cell-less acts to repress transcription during t= he establishment of the Drosophila germ cell lineage. Curr Biol 12(19): 168= 1-1685. PubMed ID: 12361572 Lemaitre, B., et al. (1995). Functional analysi= s and regulation of nuclear import ofdorsal during the immune response in D= rosophila. EMBO J 14: 536-545Lemaitre, B., et al. (1996). The Dorsoventral = regulatory gene cassette sp=C3=A4tzle/Toll/cactus controls the potent antif= ungal response in Drosophila adults. Cell 86: 973-983Pae, J., Cinalli, R. M= ., Marzio, A., Pagano, M. and Lehmann, R. (2017). GCL and CUL3 control the = switch between cell lineages by mediating localized degradation of an RTK. = Dev Cell 42(2): 130-142 e137. PubMed ID: 28743001 Leulier, F., Parquet, C.,= Pili-Floury, S., Ryu, J. H., Caroff, M., Lee, W. J., Mengin-Lecreulx, D. a= nd Lemaitre, B. (2003). The Drosophila immune system detects bacteria throu= gh specific peptidoglycan recognition. Nat. Immunol. 4: 478-484. 12692550 L= evashina, E. A., et al. (1999). Constitutive activation of Toll-mediated an= tifungal defense in serpin-deficient Drosophila. Science 285: 1917-9. PubMe= d ID: 10489372 Lewis, M., Arnot, C. J., Beeston, H., McCoy, A., Ashcroft, A= . E., Gay, N. J. and Gangloff, M. (2013). Cytokine Spatzle binds to the Dro= sophila immunoreceptor Toll with a neurotrophin-like specificity and couple= s receptor activation. Proc Natl Acad Sci U S A 110: 20461-20466. PubMed ID= : 24282309Lieberfarb, M. E., et al. (1996). Mutations that perturb poly(A)-= dependent maternalmRNA activation block the initiation of development. Deve= lopment 122: 579-588Ligoxygakis, P., et al. (2002). Activation of Drosophil= a Toll during fungal infection by a blood serine protease. Science 297: 114= -116. 12098703 Luschnig, S., et al. (2004). An F1 genetic screen for matern= al-effect mutations affecting embryonic pattern formation in Drosophila mel= anogaster. Genetics 167: 325-342. Medline abstract: 15166158 Matsuguchi, T.= , et al. (2003). JNK-interacting protein 3 associates with Toll-like recept= or 4 and is involved in LPS-mediated JNK activation. EMBO J. 22: 4455-4464.= 12941697 Mavrakis, M., Rikhy, R. and Lippincott-Schwartz, J. (2008). Plasm= a membrane polarity and compartmentalization are established before cellula= rization in the fly embryo. Dev. Cell 16: 93-104. PubMed Citation: 19154721= Maxton-Kuchenmeister, J., et al. (1999). Toll homologue expression in the = beetle tribolium suggests a different mode of dorsoventral patterning than = in drosophila embryos. Mech. Dev. 83(1-2): 107-14Medzhitov, R., Preston-Hur= lburt, P. and Janeway, C. A. (1997). A human homologue of the Drosophila To= ll protein signalsactivation of adaptive immunity. Nature 388(6640): 394-39= 7Medzhitov, R., et al. (1998). MyD88 is an adaptor protein in the hToll/IL-= 1 receptor family signaling pathways. Mol. Cell 2(2): 253-8Mellroth, P., Ka= rlsson, J. & Steiner, H. (2003). A scavenger function for a Drosophila pept= idoglycan recognition protein. J. Biol. Chem. 278: 7059-7064. 12496260 Meng= , X., Khanuja, B. S. and Ip, Y. T. (1999). Toll receptor-mediated Drosophil= a immune response requires Dif, an NF-kappaB factor. Genes Dev. 13(7): 792-= 797Michel, T., Reichhart, J. M., Hoffmann, J. A. and Royet, J. (2001). Dros= ophila Toll is activated by Gram-positive bacteria through a circulating pe= ptidoglycan recognition protein. Nature. 414(6865): 756-9. 11742401 Ming, M= ., Obata, F., Kuranaga, E. and Miura, M. (2014). Persephone/Spatzle pathoge= n sensors mediate the activation of Toll receptor signaling in response to = endogenous danger signals in apoptosis-deficient Drosophila. J Biol Chem [E= pub ahead of print]. PubMed ID: 24492611Mitcham, J. L., et al. (1996). T1/S= T2 signaling establishes it as a member of an expanding interleukin-1 recep= tor family. J. Biol. Chem. 271: 5777-5783Miura, G. I., et al. (2008). Myopi= c acts in the endocytic pathway to enhance signaling by the Drosophila EGF = receptor. Development 135: 1913-1922. PubMed Citation: 18434417 Morisato, D= . and Anderson, K. V. (1994). The sp=C3=A4tzle gene encodes a component of = the extracellular signaling pathway establishing the dorsal-ventral pattern= of the Drosophila embryo. Cell 76: 677-88Muzio M., et al. (1997). IRAK (Pe= lle) family member IRAK-2 and MyD88 as proximalmediators of IL-1 signaling.= Science 278(5343): 1612-1615Muzio M., et al. (1998). The human toll signal= ing pathway: divergence of nuclear factor kappaB and JNK/SAPK activation up= stream of tumor necrosisfactor receptor-associated factor 6 (TRAF6). J. Exp= . Med. 187(12): 2097-101Nambu, J. R., et al. (1990). The single-minded gene= of Drosophila is required for the expression of genes important for the de= velopment of CNSmidline cells. Cell 63: 63-75Ninomiya-Tsuji, J., et al. (19= 98). The kinase TAK1 can activate the NIK-I kappaB as well as theMAP kinase= cascade in the IL-1 signalling pathway. Nature 398(6724): 252-6Nonaka, S.,= Kawamura, K., Hori, A., Salim, E., Fukushima, K., Nakanishi, Y. and Kurais= hi, T. (2018). Characterization of Spz5 as a novel ligand for Drosophila To= ll-1 receptor. Biochem Biophys Res Commun. PubMed ID: 30361090Norris, J. L.= and Manley, J. L. (1995). Regulation of dorsal in cultured cells by Toll a= nd tube:tube function involves a novel mechanism. Genes Dev. 9: 358-369Norr= is, J. L. and Manley, J. L. (1996). Functional interactions between the pel= le kinase, Toll receptor, andTube suggest a mechanism for activation of Dor= sal. Genes Dev. 10(7): 862-72Nose, A., Mahajan, V. B. and Goodman, D. S. (1= 992). Connectin: a homophilic cell adhesion molecule expressed on a subset = of muscles and the motoneurons that innervatethem in Drosophila. Cell 70: 5= 53-67Ollendorff, V., et al. (1994). The GARP gene encodes a new member of t= he family of leucine-rich repeat-containing proteins. Cell Growth Differ 5:= 213-9Ozuak, O., Buchta, T., Roth, S. and Lynch, J. A. (2014). Dorsoventral= polarity of the Nasonia embryo primarily relies on a BMP gradient formed w= ithout input from Toll. Curr Biol [Epub ahead of print]. PubMed ID: 2530807= 5Park, J. S., et al. (2004). Involvement of toll-like receptors 2 and 4 in = cellular activation by high mobility group box 1 protein. J. Biol. Chem. 27= 9(9): 7370-7. 14660645 Peng, J., Zipperlen, P. and Kubli, E. (2005). Drosop= hila Sex-peptide stimulates female innate immune system after mating via th= e Toll and Imd pathways. Curr. Biol. 15: 1690-1694. 16169493Prothmann, C., = Armstrong, N. J. and Rupp, R. A. W. (2000). The Toll/IL-1 receptor binding = protein MyD88 is required for Xenopusaxis formation. Mech. Dev. 97: 85-92. = PubMed Citation: 11025209Pujol, N., et al. (2001). A reverse genetic analys= is of components of the Toll signaling pathway in Caenorhabditis elegans. C= urr. Biol. 11: 809-821. PubMed Citation: 11516642 Qiu, P. Pan, P. C. and Go= vind, S. (1998). A role for the Drosophila Toll/Cactus pathway in larval he= matopoiesis. Development 125(10): 1909-1920. PubMed Citation: 9550723 Rock,= F. L., et al. (1998). A family of human receptors structurally related to = Drosophila Toll. Proc. Natl. 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Regulation of the Dorsal morphogen by the Toll and torso signaling pa= thways: a receptor tyrosine kinase selectively masks transcriptional repres= sion. Genes Dev 8: 1247-1257Rust, K., Byrnes, L. E., Yu, K. S., Park, J. S.= , Sneddon, J. B., Tward, A. D. and Nystul, T. G. (2020). A single-cell atla= s and lineage analysis of the adult Drosophila ovary. Nat Commun 11(1): 562= 8. PubMed ID: 33159074Salles, F. J., et al (1994). Coordinate initiation of= Drosophila development byregulated polyadenylation of maternal messenger R= NAs. Science 266: 1996-1999Sanz, L., Diaz-Meco, M. T, Nakano, H. and Moscat= , J. (2000). The atypical PKC-interacting protein p62 channels NF-kappaB ac= tivation by the IL-1-TRAF6 pathway.EMBO J. 19(7): 1576-86. 10747026Schisa, = J. A. and Strickland, S. (1998). Cytoplasmic polyadenylation of Toll mRNA i= s required for dorsal-ventral patterning in Drosophila embryogenesis. Devel= opment 125(15): 2995-3003. PubMed ID: 9655821Schmid, M. 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Pelle kinase is activated by autophosphorylation during = Toll signaling in Drosophila. Development 129: 1925-1933. 11934858 Shields,= A., Amcheslavsky, A., Brown, E., Lee, T. V., Nie, Y., Tanji, T., Ip, Y. T.= and Bergmann, A. (2022). Toll-9 interacts with Toll-1 to mediate a feedbac= k loop during apoptosis-induced proliferation in Drosophila. Cell Rep 39(7)= : 110817. PubMed ID: 35584678Sorrentino, R. P., Melk, J. P. and Govind, S. = (2004). Genetic analysis of contributions of dorsal group and JAK-Stat92E p= athway genes to larval hemocyte concentration and the egg encapsulation res= ponse in Drosophila. Genetics 166: 1343-1356. 15082553 Steiner, H. (2004). = Peptidoglycan recognition proteins: on and off switches for innate immunity= . Immunol. Rev. 198: 83-96. 15199956 Stein, D. and Nusslein-Volhard, C. (19= 92). Multiple extracellular activities in Drosophila eggperivitelline fluid= are required for establishment ofembryonic dorsal-ventral polarity. 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