D. Citer-ce,

A. A. Mohamed, L. Zhang, M. A. Dorrah, M. Elmogy, H. A. Yousef et al., Molecular characterization of a c-type lysozyme from the desert locust, Schistocerca gregaria (Orthoptera: Acrididae), Developmental and Comparative Immunology, vol.61, pp.60-69, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01837295

R. Abraham, E. G. Nagaraju, J. Salunke, D. Gupta, H. M. Datta et al., Purification and partial characterization of an induced antibacterial protein in the silkworm, Bombyx mori, J. Invertebr. Pathol, vol.65, pp.17-24, 1995.

B. Altincicek, E. Knorr, and A. Vilcinskas, Beetle immunity: Identification of immune-inducible genes from the model insect Tribolium castaneum, Dev. Comp. Immunol, vol.32, pp.585-595, 2008.

D. Andreu, R. B. Merrifield, H. Steiner, and H. G. Boman, N-terminal analogues of cecropin A: synthesis, antibacterial activity, and conformational properties, Biochemistry, vol.24, pp.1683-1688, 1985.

C. Anselme, V. Perez-brocal, A. Vallier, C. Vincent-monegat, D. Charif et al., Identification of the weevil immune genes and their expression in the bacteriome tissue, BMC Biol, vol.6, p.43, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00391128

C. A. Araujo, P. J. Waniek, P. Stock, C. Mayer, A. M. Jansen et al., Sequence characterization and expression patterns of defensin and lysozyme encoding genes from the gut of the reduviid bug Triatoma brasiliensis, Insect Biochem. Mol. Biol, vol.36, pp.547-560, 2006.

C. Balczun, E. Knorr, H. Topal, C. K. Meiser, A. H. Kollien et al., Sequence characterization of an unusual lysozyme gene expressed in the intestinal tract of the reduviid bug Triatoma infestans (Insecta), Parasitol. Res, vol.102, pp.229-232, 2008.

I. S. Bang and S. M. Yoe, Purification and cDNA cloning of lysozyme II from cabbage butterfly, Artogeia rapae larvae, Entomol. Res, vol.35, pp.207-211, 2005.

A. Beckert, J. Wiesner, A. Baumann, A. K. Pöppel, H. Vogel et al., Two c-type lysozymes boost the innate immunity system of the invasive ladybird Harmonia axyridis, Dev. Comp. Immunol, vol.49, pp.303-312, 2015.

H. G. Boman, I. Faye, G. H. Gudmundsson, J. Y. Lee, and D. A. Lidholm, Cell-free immunity in Cecropia. A model system for antibacterial proteins, Eur. J. Biochem, vol.201, pp.23-31, 1991.

R. Bonasio, G. Zhang, C. Ye, N. S. Mutti, X. Fang et al., Genomic comparison of the ants Camponotus floridanus and Harpegnathos saltator, Science, vol.329, pp.1068-1071, 2010.

P. Bulet and R. Stocklin, Insect antimicrobial peptides: structures, properties and gene regulation, Protein Pept. Lett, vol.12, pp.3-11, 2005.

L. Callewaert and C. W. Michiels, Lysozymes in the animal kingdom, J. Biosci, vol.35, pp.127-160, 2010.

F. C. Cançado, P. Chimoy-effio, W. R. Terra, and S. R. Marana, Cloning, purification and comparative characterization of two digestive lysozymes from Musca domestica larvae. Braz, J. Med. Biol. Res, vol.41, pp.969-977, 2008.

M. Chapelle, P. A. Girard, F. Cousserans, N. A. Volkoff, and B. Duvic, Lysozymes and lysozyme-like proteins from the fall armyworm, Spodoptera frugiperda, Mol. Immunol, vol.47, pp.261-269, 2009.
URL : https://hal.archives-ouvertes.fr/hal-02668143

H. C. Chen, J. H. Brown, J. L. Morell, and C. M. Huang, Synthetic magainin analogues with improved antimicrobial activity, FEBS lett, vol.236, pp.462-466, 1988.

T. A. Cross, A. Arseniev, B. A. Cornell, J. H. Davis, J. A. Killian et al., Gramicidin channel controversy--revisited, Nat. Struct. Biol, vol.6, pp.610-611, 1999.

S. Fujimoto, I. Toshimori-tsuda, K. Kishimoto, Y. Yamano, and I. Morishima, Protein purification, cDNA cloning and gene expression of lysozyme from eri-silkworm, Samia cynthia ricini, Comp. Biochem. Physiol. B Biochem. Mol. Biol, vol.128, pp.709-718, 2001.

A. Fujita, Lysozymes in insects: what role do they play in nitrogen metabolism ?, Physiol. Entomol, vol.29, pp.305-310, 2004.

A. Fujita, T. Minamoto, I. Shimizu, and T. Abe, Molecular cloning of lysozyme-encoding cDNAs expressed in the salivary gland of a wood-feeding termite, Reticulitermes speratus, Insect Biochem. Mol. Biol, vol.32, pp.1615-1624, 2002.

N. M. Gerardo, B. Altincicek, C. Anselme, H. Atamian, S. M. Barribeau et al., Immunity and other defenses in pea aphids, Acyrthosiphon pisum. Genome Biol, vol.11, issue.2, p.21, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00459961

L. Grunclová, H. Fouquier, V. Hypsa, and P. Kopácek, Lysozyme from the gut of the soft tick Ornithodoros moubata: the sequence, phylogeny and post-feeding regulation, Dev. Comp. Immunol, vol.27, pp.651-660, 2003.

Y. He, X. Cao, K. Li, Y. Hu, Y. Chen et al., A genome-wide analysis of antimicrobial effector genes and their transcription patterns in Manduca sexta, Insect Biochem. Mol. Biol, vol.62, pp.23-37, 2015.

W. Hu, K. C. Lee, and T. A. Cross, Tryptophans in membrane proteins: indole ring orientations and functional implications in the gramicidin channel, Biochemistry, vol.32, pp.7035-7047, 1993.

D. Hultmark, Insect lysozymes, Lysozymes: Model Enzymes in Biochemistry and Physiology, vol.75, pp.87-102, 1996.

S. C. Hung, W. Wang, S. I. Chan, and H. M. Chen, Membrane lysis by the antibacterial peptides cecropins B1 and B3: A spin-label electron spin resonance study on phospholipid bilayers, Biophys. J, vol.77, pp.3120-3133, 1999.

H. R. Ibrahim, U. Thomas, and A. Pellegrini, A helix-loop-helix peptide at the upper lip of the active site cleft of lysozyme confers potent antimicrobial activity with membrane permeabilization action, J. Biol. Chem, vol.276, pp.43767-43774, 2001.

D. Jain, D. T. Nair, G. J. Swaminathan, E. G. Abraham, J. Nagaraju et al., Structure of the induced antibacterial protein from tasar silkworm, Antheraea mylitta. Implications to molecular evolution, J. Biol. Chem, vol.276, pp.41377-41382, 2001.

B. Li, E. Calvo, O. Marinotti, A. A. James, and S. M. Paskewitz, Characterization of the c-type lysozyme gene family in Anopheles gambiae, Gene, vol.360, pp.131-139, 2005.

X. Li, D. Fan, W. Zhang, G. Liu, L. Zhang et al., Outbred genome sequencing and CRISPR/Cas9 gene editing in butterflies, Nat. Commun, vol.6, p.8212, 2015.

F. Liu, L. Cui, D. Cox-foster, and G. W. Felton, Characterization of a salivary lysozyme in larval Helicoverpa zea, J. Chem. Ecol, vol.30, pp.2439-2457, 2004.

T. D. Lockey and D. D. Ourth, Purification and characterization of lysozyme from hemolymph of Heliothis virescens larvae, Biochem. Biophys. Res. Commun, vol.220, pp.502-508, 1996.

K. Maenaka, G. Kawai, K. Watanabe, F. Sunada, and I. Kumagai, Functional and structural role of a tryptophan generally observed in protein-carbohydrate interaction. TRP-62 of hen egg white lysozyme, J. Biol. Chem, vol.269, pp.7070-7075, 1994.

K. Maenaka, M. Matsushima, H. Song, F. Sunada, K. Watanabe et al., Dissection of protein-carbohydrate interactions in mutant hen egg-white lysozyme complexes and their hydrolytic activity, J. Mol. Biol, vol.247, pp.281-293, 1995.

A. Matsuura, M. Yao, T. Aizawa, N. Koganesawa, K. Masaki et al., Structural analysis of an insect lysozyme exhibiting catalytic efficiency at low temperatures, Biochemistry, vol.41, pp.12086-12092, 2002.

H. A. Mckenzie, Alpha-lactalbumins and lysozymes as a model, Lysozymes: Model Enzymes in Biochemistry and Physiology, vol.75, pp.365-409, 1996.

A. A. Mohamed, M. Elmogy, M. A. Dorrah, H. A. Yousef, and T. T. Bassal, Antimicrobial activity of lysozyme in the desert locust, Schistocerca gregaria (Orthoptera: Acrididae), Eur. J. Entomol, vol.110, pp.559-565, 2013.

W. Mohrig and B. Messner, Lysozyme as antibacterial agent in honey and bees venom, Acta Biol. Med. Ger, vol.21, pp.85-95, 1968.

C. K. Moreira-ferro, S. Daffre, A. A. James, and O. Marinotti, A lysozyme in the salivary glands of the malaria vector Anopheles darlingi, Insect Mol. Biol, vol.7, pp.257-264, 1998.

A. B. Mulnix and P. E. Dunn, Structure and induction of a lysozyme gene from the tobacco hornworm, Manduca sexta, Insect Biochem. Mol. Biol, vol.24, pp.271-281, 1994.

R. S. Mulvey, R. J. Gaultieri, and S. Beychok, Spectral properties of human lysozyme and its inhibitor complexes. Fluorescence and difference spectra, Biochemistry, vol.12, pp.2683-2690, 1973.

R. S. Mulvey, R. J. Gualtieri, and S. Beychok, Composition, fluorescence, and circular dichroism of rat lysozyme, Biochemistry, vol.13, pp.782-787, 1974.

S. Nakajima and T. Kikuchi, Analysis of the differences in the folding mechanisms of c-type lysozymes based on contact maps constructed with interresidue average distances, J. Mol. Model, vol.13, pp.587-594, 2007.

C. Oka, M. Tanaka, M. Muraki, K. Harata, K. Suzuki et al., Human lysozyme secretion increased by alpha-factor pro-sequence in Pichia pastoris, Biosci. Biotechnol. Biochem, vol.63, pp.1977-1983, 1999.

H. Y. Park, S. S. Park, S. W. Shin, D. S. Park, M. G. Kim et al., Protein purification and nucleotide sequence of a lysozyme from the bacteria-induced larvae of the fall webworm, Hyphantria cunea. Arch. Insect Biochem. Physiol, vol.35, pp.335-345, 1997.

, Comment citer ce document

A. A. Mohamed, L. Zhang, M. A. Dorrah, M. Elmogy, H. A. Yousef et al., Molecular characterization of a c-type lysozyme from the desert locust, Schistocerca gregaria (Orthoptera: Acrididae), Developmental and Comparative Immunology, vol.61, pp.60-69, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01837295

A. Pellegrini, U. Thomas, N. Bramaz, S. Klauser, P. Hunziker et al., Identification and isolation of a bactericidal domain in chicken egg white lysozyme, J. Appl. Microbiol, vol.82, pp.372-378, 1997.

E. M. Prager and P. Jolles, Animal lysozymes c and g: an overview, Lysozymes: Model Enzymes in Biochemistry and Physiology, vol.75, pp.9-31, 1996.

R. Regel, S. R. Matioli, and W. R. Terra, Molecular adaptation of Drosophila melanogaster lysozymes to a digestive function, Insect Biochem. Mol. Biol, vol.28, pp.309-319, 1998.

G. A. Rosenthal and D. L. Dahlman, Studies of L-canavanine incorporation into insectan lysozyme, J. Biol. Chem, vol.266, pp.15684-15687, 1991.

P. A. Rossignol and A. M. Lueders, Bacteriolytic factor in the salivary glands of Aedes aegypti, Comp. Biochem. Physiol. B Biochem. Mol. Biol, vol.83, pp.819-822, 1986.

V. W. Russell and P. E. Dunn, Lysozyme in the midgut of Manduca sexta during metamorphosis, Arch. Insect Biochem. Physiol, vol.17, pp.67-80, 1991.

N. Saitou and M. Nei, The neighbor-joining method: a new method for reconstructing phylogenetic trees, Mol. Biol. Evol, vol.4, pp.406-425, 1987.

P. M. Schneider, Purification and properties of three lysozymes from hemolymph of the cricket, Grillus bimaculatus (De Geer), Insect Biochem, vol.15, pp.463-470, 1985.

J. A. Simser, K. R. Macaluso, A. Mulenga, and A. F. Azad, Immune-responsive lysozymes from hemocytes of the American dog tick, Dermacentor variabilis and an embryonic cell line of the Rocky Mountain wood tick, D. andersoni. Insect Biochem. Mol. Biol, vol.34, pp.1235-1246, 2004.

H. Song, K. Inaka, K. Maenaka, and M. Matsushima, Structural changes of active site cleft and different saccharide binding modes in human lysozyme co-crystallized with hexa-N-acetylchitohexaose at pH 4.0, J. Mol. Biol, vol.244, pp.522-540, 1994.

H. Y. Song, F. S. Cohen, and W. A. Cramer, Membrane topography of ColE1 gene products: the hydrophobic anchor of the colicin E1 channel is a helical hairpin, J. Bacteriol, vol.173, pp.2927-2934, 1991.

S. Srisailam, A. I. Arunkumar, W. Wang, C. Yu, and H. M. Chen, Conformational study of a custom antibacterial peptide cecropin B1: implications of the lytic activity, Biochim. Biophys. Acta, vol.1479, pp.275-285, 2000.

S. Tanaka and K. Maeno, Maternal effects on progeny body size and color in the desert locust, Schistocerca gregaria: examination of a current view, J. Insect Physiol, vol.54, pp.612-618, 2008.

T. Tanaka, S. Kawano, S. Nakao, R. Umemiya-shirafuji, M. M. Rahman et al., The identification and characterization of lysozyme from the hard tick Haemaphysalis longicornis, Ticks Tick Borne Dis, vol.1, pp.178-185, 2010.

J. D. Thompson, D. G. Higgins, and T. J. Gibson, CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice, Nucleic Acids Res, vol.22, pp.4673-4680, 1994.

S. Tsakas and V. J. Marmaras, Insect immunity and its signalling: an overview, Invertebrate Surviv. J, vol.7, pp.228-238, 2010.

R. J. Ursic-bedoya, A. M. Mitzey, M. Obraztsova, and C. Lowenberger, Molecular cloning and transcriptional activation of lysozyme-encoding cDNAs in the mosquito Aedes aegypti, Insect Mol. Biol, vol.14, pp.89-94, 2005.

, Comment citer ce document

A. A. Mohamed, L. Zhang, M. A. Dorrah, M. Elmogy, H. A. Yousef et al., Molecular characterization of a c-type lysozyme from the desert locust, Schistocerca gregaria (Orthoptera: Acrididae), Developmental and Comparative Immunology, vol.61, pp.60-69, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01837295

R. J. Ursic-bedoya, H. Nazzari, D. Cooper, O. Triana, M. Wolff et al., Identification and characterization of two novel lysozymes from Rhodnius prolixus, a vector of Chagas disease, J. Insect Physiol, vol.54, pp.593-603, 2008.

A. Vilcinskas, K. Mukherjee, and H. Vogel, Expansion of the antimicrobial peptide repertoire in the invasive ladybird Harmonia axyridis, Proc. Biol. Sci, vol.280, 2013.

H. Vogel, B. Altincicek, G. Glöckner, and A. Vilcinskas, A comprehensive transcriptome and immune-gene repertoire of the lepidopteran model host Galleria mellonella, BMC Genomics, vol.12, p.308, 2011.

G. Von-heijne, The signal peptide, J. Membr. Biol, vol.115, pp.195-201, 1990.

W. Wang, D. K. Smith, and H. M. Chen, The effect of pH on the structure, binding and model membrane lysis by cecropin B and analogs, Biochim. Biophys. Acta, vol.1473, pp.418-430, 1999.

W. X. Wang, Y. P. Wang, X. J. Deng, X. L. Dang, J. H. Tian et al., Molecular and functional characterization of a c-type lysozyme from the Asian corn borer, Ostrinia furnacalis, J. Insect Sci, vol.9, p.17, 2009.

R. M. Waterhouse, E. V. Kriventseva, S. Meister, Z. Xi, K. S. Alvarez et al., Evolutionary dynamics of immune-related genes and pathways in disease-vector mosquitoes, Science, vol.316, pp.1738-1743, 2007.

S. M. Yoe, I. S. Bang, C. S. Kang, and H. J. Kim, Purification and characterization of two lysozymes from larval haemolymph of cabbage butterfly, Artogeia rapae, Mol. Cells, vol.6, pp.609-614, 1996.

D. Zachary and D. Hoffmann, Lysozyme is stored in the granules of certain hemocyte types in Locusta, J. Insect Physiol, vol.30, pp.405-411, 1984.

Y. Zhang, J. Huang, B. Zhou, C. Zhang, W. Liu et al., Up-regulation of lysozyme gene expression during metamorphosis and immune challenge of the cotton bollworm, Helicoverpa armigera. Arch. Insect Biochem. Physiol, vol.70, pp.18-29, 2009.

, Comment citer ce document

A. A. Mohamed, L. Zhang, M. A. Dorrah, M. Elmogy, H. A. Yousef et al., Molecular characterization of a c-type lysozyme from the desert locust, Schistocerca gregaria (Orthoptera: Acrididae), Developmental and Comparative Immunology, vol.61, pp.60-69, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01837295

, Comment citer ce document

A. A. Mohamed, L. Zhang, M. A. Dorrah, M. Elmogy, H. A. Yousef et al., Molecular characterization of a c-type lysozyme from the desert locust, Schistocerca gregaria (Orthoptera: Acrididae), Developmental and Comparative Immunology, vol.61, pp.60-69, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01837295

, Comment citer ce document

A. A. Mohamed, L. Zhang, M. A. Dorrah, M. Elmogy, H. A. Yousef et al., Molecular characterization of a c-type lysozyme from the desert locust, Schistocerca gregaria (Orthoptera: Acrididae), Developmental and Comparative Immunology, vol.61, pp.60-69, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01837295