[1] | Boman HG (1995) Peptide antibiotics and their role in innate immunity. Annu Rev Immunol 13: 61-92. doi:10.1146/annurev.iy.13.040195.000425. PubMed: 7612236.
|
[2] | Bulet P, St?cklin R, Menin L (2004) Anti-microbial peptides: from invertebrates to vertebrates. Immunol Rev 198: 169-184. doi:10.1111/j.0105-2896.2004.0124.x. PubMed: 15199962.
|
[3] | Smith VJ, Fernandes JM, Kemp GD, Hauton C (2008) Crustins: enigmatic WAP domain-containing antibacterial proteins from crustaceans. Dev Comp Immunol 32: 758-772. doi:10.1016/j.dci.2007.12.002. PubMed: 18222540.
|
[4] | Ranganathan S, Simpson KJ, Shaw DC, Nicholas K (1999) The whey acidic protein family: a new signature motif and three dimensional structure by comparative modeling. J Mol Graph Modell 17: 106-113. doi:10.1016/S1093-3263(99)00023-6.
|
[5] | Hennighausen LG, Sippel AE (1982) Mouse whey acidic protein is a novel member of the family of ‘four-disul?de core’ proteins. Nucleic Acids Res 10: 2677-2684. doi:10.1093/nar/10.8.2677. PubMed: 6896234.
|
[6] | Sallenave JM (2002) Antimicrobial activity of antiproteinases. Biochem Soc Trans 30: 111-115. PubMed: 12023836.
|
[7] | Du ZQ, Li XC, Wang ZH, Zhao XF, Wang JX (2010) A single WAP domain (SWD)-containing protein with antipathic relevance in red swamp crayfish, Procambarus clarkii. Fish Shellfish Immunol 28: 134–142. doi:10.1016/j.fsi.2009.10.009. PubMed: 19840856.
|
[8] | Chen D, He N, Xu X (2008) Mj-DWD, a double WAP domain-containing protein with antiviral relevance in Marsupenaeus japonicus. Fish Shellfish Immunol 25: 775-781. doi:10.1016/j.fsi.2008.02.017. PubMed: 18974012.
|
[9] | Smith VJ (2011) Phylogeny of whey acidic protein (WAP) four-disulfide core proteins and their role in lower vertebrates and invertebrates. Biochem Soc Trans 39: 1403–1408. doi:10.1042/BST0391403. PubMed: 21936823.
|
[10] | Hagiwara K, Kikuchi T, Endo Y, Huqun Usui K, Takahashi M et al. (2003) Mouse SWAM1 and SWAM2 are antibacterial proteins composed of a single whey acidic protein motif. J Immunol 170: 1973-1979. PubMed: 12574366.
|
[11] | Wiedow O, Schr?der JM, Gregory H, Young JA, Christophers E (1990) Elafin: an elastase-specific inhibitor of human skin. J Biol Chem 265: 14791-14795. PubMed: 2394696.
|
[12] | Hiemstra PS, Maassen RJ, Stolk J, Heinzel-Wieland R, Steffens GJ et al. (1996) Antibacterial activity of antileukoprotease. Infect Immun 64: 4520-4524. PubMed: 8890201.
|
[13] | Nile CJ, Townes CL, Hirst BH, Hall J (2006) The novel avian protein, AWAK, contains multiple domains with homology to protease inhibitory modules. Mol Immunol 43: 388-394. doi:10.1016/j.molimm.2005.02.015. PubMed: 16310052.
|
[14] | Vargas-Albores F, Yepiz-Plascencia G, Jiménez-Vega F, Avila-Villa A (2004) Structural and functional differences of Litopenaeus vannamei crustins. Comp Biochem Physiol B Biochem Mol Biol 138(4): 415-422. doi:10.1016/j.cbpc.2004.05.007. PubMed: 15325343.
|
[15] | Johansson MW, Keyser P, S?derh?ll K (1994) Purification and cDNA cloning of a four-domain Kazal proteinase inhibitor from crayfish blood cells. Eur J Biochem 223: 389-394. doi:10.1111/j.1432-1033.1994.tb19005.x. PubMed: 8055907.
|
[16] | Jiménez-Vega F, Vargas-Albores F (2005) A four-Kazal domain protein in Litopenaeus vannamei hemocytes. Dev Comp Immunol 29: 385-391. doi:10.1016/j.dci.2004.10.001. PubMed: 15707660.
|
[17] | Supungul P, Klinbunga S, Pichyangkura R, Jitrapakdee S, Hirono I, Aoki T et al. (2002) Identification of immune-related genes in hemocytes of black tiger shrimp (Penaeus monodon). Mar Biotechnol 4: 487-494. doi:10.1007/s10126-002-0043-8. PubMed: 14961242.
|
[18] | Liang Z, Sottrup-Jensen L, Aspán A, Hall M, S?derh?ll K (1997) Pacifastin, a novel 155-kDa heterodimeric proteinase inhibitor containing a unique transferrin chain. Proc Natl Acad Sci U S A 94: 6682-6687. doi:10.1073/pnas.94.13.6682. PubMed: 9192625.
|
[19] | Liang Z, S?derh?ll K (1995) Isolation of cDNA encoding a novel serpin of crayfish hemocytes. Comp Biochem Physiol B Biochem Mol Biol 112: 384-391. PubMed: 7584865.
|
[20] | Hall M, S?derh?ll K, Sottrup-Jensen L (1989) Amino acid sequence around the thiolester of alpha 2-macroglobulin from plasma of the crayfish, Pacifastacus leniusculus. FEBS Lett 254: 111-114. doi:10.1016/0014-5793(89)81019-1. PubMed: 2476331.
|
[21] | Gollas-Galván T, Sotelo-Mundo RR, Yepiz-Plascencia G, Vargas-Requena C, Vargas-Albores F (2003) Purification and characterization of alpha 2-macroglobulin from the white shrimp (Penaeus vannamei). Comp Biochem Physiol C Toxicol Pharmacol 134: 431-438. doi:10.1016/S1532-0456(03)00002-4. PubMed: 12727292.
|
[22] | Rattanachai A, Hirono I, Ohira T, Takahashi T, Aoki T (2004) Molecular cloning and expression analysis of alpha 2-macroglobulin in the kuruma shrimp, Marsupenaeus japonicus. Fish Shellfish Immunol 16: 599-611. doi:10.1016/j.fsi.2003.09.011. PubMed: 15110334.
|
[23] | Lin YC, Vaseeharan B, Ko CF, Chiou TT, Chen JC (2007) Molecular cloning and characterisation of a proteinase inhibitor, alpha 2-macroglobulin (alpha2-M) from the haemocytes of tiger shrimp Penaeus monodon. Mol Immunol 44: 1065-1074. doi:10.1016/j.molimm.2006.08.002. PubMed: 16982096.
|
[24] | Lin YC, Vaseeharan B, Chen JC (2008) Molecular cloning and phylogenetic analysis on alpha2-macroglobulin (alpha2-M) of white shrimp Litopenaeusvannamei. Dev Comp Immunol 32: 317-329. doi:10.1016/j.dci.2007.07.002. PubMed: 17706773.
|
[25] | Du ZQ, Ren Q, Zhao XF, Wang JX (2009) A double WAP domain (DWD)- containing protein with proteinase inhibitory activity in Chinese white shrimp, Fenneropenaeus chinensis. Comp Biochem Physiol B Biochem Mol Biol 154: 203-210. doi:10.1016/j.cbpb.2009.06.004. PubMed: 19545640.
|
[26] | Jiménez-Vega F, Vargas-Albores F (2007) A secretory leukocyte proteinase inhibitor (SLPI)-like protein from Litopenaeus vannamei haemocytes. Fish Shellfish Immunol 23: 1119-1126. doi:10.1016/j.fsi.2007.06.006. PubMed: 17664073.
|
[27] | Davey GC, Caplice NC, Martin SA, Powell R (2001) A survey of genes in the Atlantic salmon (Salmo salar) as identi?ed by expressed sequence tags. Gene 263: 121–130. doi:10.1016/S0378-1119(00)00587-4. PubMed: 11223250.
|
[28] | Yang WL, Zhang GH (2005) Current trends of aquaculture roduction and sustainable development of Chinese mitten crab, Eriocheir sinensis. Chin J Freshwater Fish 35: 62-64.
|
[29] | Wang W, Chen J, Du K, Xu Z (2004) Morphology of spiroplasmas in the Chinese mitten crab Eriocheir sinensis associated with tremor disease. Res Microbiol 155: 630–635. doi:10.1016/j.resmic.2004.04.010. PubMed: 15380550.
|
[30] | Wu HX, Feng MG (2004) Mass mortality of larval Eriocheir sinensis (Decapoda: Grapsidae) population bred under facility conditions: possible role of Zoothamnium sp. (Peritrichida: Vorticellidae) Epiphyte. J Invertebr Pathol 86: 59–60. doi:10.1016/j.jip.2004.03.010. PubMed: 15145254.
|
[31] | Zhang S, Zhang J, Huang C, Bonami JR, Shi Z (2002) Preliminary studies on two strains of reovirus from crab Eriocheir sinensis. Virol Sin 17: 263–265.
|
[32] | S?derh?ll K, Smith VJ (1983) Separation of the haemocyte populations of Carcinus maenas and other marine decapods, and prophenoloxidase distribution. Dev Comp Immunol 7: 229–239. doi:10.1016/0145-305X(83)90004-6. PubMed: 6409683.
|
[33] | Van Harreveld (1936) A?physiological?solution?for freshwater?crustaceans. Exp Biol Med 34: 428-432.
|
[34] | He L, Wang Q, Jin X, Wang Y, Chen L et al. Transcriptome Profiling of Testis during Sexual Maturation Stages in Eriocheir sinensis Using Illumina Sequencing. PLOS ONE. 20127: e33735.
|
[35] | Jiang H, Ren F, Sun J, He L, Li W et al. (2010) Molecular Cloning and Gene Expression Analysis of the Leptin Receptor in the Chinese Mitten Crab Eriocheir sinensis. PLOS ONE 5: e11175. doi:10.1371/journal.pone.0011175. PubMed: 20567508.
|
[36] | Livak KJ, Schmittgen TD (2001) Analysis of Relative Gene Expression Data Using Real-Time Quantitative PCR and the 2?ΔΔCT Method. Methods 25: 402-408. doi:10.1006/meth.2001.1262. PubMed: 11846609.
|
[37] | Ren Q, Du ZQ, Zhao XF, Wang JX (2009) An acyl-CoA-binding protein (FcACBP) and a fatty acid binding protein (FcFABP) respond to microbial infection in Chinese white shrimp, Fenneropenaeus chinensis. Fish Shellfish Immunol 27: 739-747. doi:10.1016/j.fsi.2009.09.007. PubMed: 19766195.
|
[38] | Yu YH, Yu YC, Huang HQ, Feng KX, Xu AL et al. (2007) A Short-Form C-Type Lectin from Amphioxus Acts as a Direct Microbial Killing Protein via Interaction with Peptidoglycan and Glucan. J Immunol 179: 8425-8434. PubMed: 18056389.
|
[39] | Gowda NM, Goswami U, Islam Khan M (2008) T-antigen binding lectin with antibacterial activity from marine invertebrate, sea cucumber (Holothuria scabra): Possible involvement in differential recognition of bacteria. J Invertebr Pathol 99: 141-145. doi:10.1016/j.jip.2008.04.003. PubMed: 18501924.
|
[40] | Yang J, Qiu L, Wei X, Wang L, Wang L et al. (2010) An ancient C-type lectin in Chlamys farreri (CfLec-2) that mediate pathogen recognition and cellular adhesion. Dev Comp Immunol 34: 1274-1282. doi:10.1016/j.dci.2010.07.004. PubMed: 20638410.
|
[41] | Somprasong N, Rimphanitchayakit V, Tassanakajon A (2006) A ?ve-domain Kazal-type serine proteinase inhibitor from black tiger shrimp Penaeus monodon and its inhibitory activities. Dev Comp Immunol 30: 998–1008. doi:10.1016/j.dci.2006.01.004. PubMed: 16519941.
|
[42] | Snedecor G, [!(surname)!] (1971) Statistical methods. Ames, IA: The Iowas State University Press.
|
[43] | Pech LL, Strand MR (1996) Granular cells are required for encapsulation of foreign targets by insect haemocytes. J CellSci 109: 2053–2060. PubMed: 8856501.
|
[44] | Zhang J, Li F, Wang Z, Xiang J (2007) Cloning and recombinant expression of a crustin-like gene from Chinese shrimp, Fenneropenaeus chinensis. J Biotechnol 127: 605-614. doi:10.1016/j.jbiotec.2006.08.013. PubMed: 16987562.
|
[45] | Smith VJ, Chisholm JR (2001) Antimicrobial proteins in crustaceans. Adv Exp Med Biol 484: 95-112. doi:10.1007/978-1-4615-1291-2_10. PubMed: 11419011.
|
[46] | Dear TN, Ramshaw IA, Kefford RF (1988) Differential expression of a novel gene, WDNM1, in nonmetastatic rat mammary adenocarcinoma cells. Cancer Res 48: 5203-5209. PubMed: 3136918.
|
[47] | Araki K, Kuroki J, Ito O, Kuwada M, Tachibana S (1989) Novel peptide inhibitor (SPAI) of Na+,K+-ATPase from porcine intestine. Biochem Biophys Res Commun 164: 496-502. doi:10.1016/0006-291X(89)91747-6. PubMed: 2553020.
|
[48] | Coronel CE, San Agustin J, Lardy HA (1990) Purification and structure of caltrin-like proteins from seminal vesicle of the guinea pig. J Biol Chem 265: 6854-6859. PubMed: 2324101.
|
[49] | Hauton C, Brockton V, Smith VJ (2006) Cloning of a crustin- like, single whey-acidic-domain, antibacterial peptide from the haemocytes of the European lobster, Homarus gammarus, and its response to infection with bacteria. Mol Immunol 43: 1490-1496. doi:10.1016/j.molimm.2005.07.029. PubMed: 16144710.
|
[50] | Amparyup P, Kondo H, Hirono I, Aoki T, Tassanakajon A (2008b) Molecular cloning, genomic organization and recombinant expression of a crustin-like antimicrobial peptide from black tiger shrimp Penaeus monodon. Mol Immunol 45: 1085–1093. doi:10.1016/j.molimm.2007.07.031.
|
[51] | Mu C, Zheng P, Zhao J, Wang L, Zhang H et al. (2010) Molecular characterization and expression of a crustin-like gene from Chinese mitten crab, Eriocheir sinensis. Dev Comp Immunol 34: 734–740. doi:10.1016/j.dci.2010.02.001. PubMed: 20144896.
|
[52] | Mu C, Zheng P, Zhao J, Wang L, Qiu L et al. (2011) A novel type III crustin (CrusEs2) identified from Chinese mitten crab Eriocheir sinensis. Fish Shellfish Immunol 31: 142–147. doi:10.1016/j.fsi.2011.04.013. PubMed: 21549196.
|
[53] | Li FM, Wang LL, Qiu LM, Zhang H, Gai YC et al. (2011) A double WAP domain-containing protein from Chinese mitten crab Eriocheir sinensis with antimicrobial activities against Gram-negative bacteria and yeast. Dev Comp Immunol 36: 183–190. PubMed: 21798281.
|
[54] | Tomee JFC, Hiemstra PS, Heinzel-Wieland R, Kauffman HF (1997) Antileukoprotease: an endogenous protein in the innate mucosal defense against fungi. J Infect Dis 176: 740–747. doi:10.1086/514098. PubMed: 9291323.
|
[55] | Hagiwara K, Kikuchi T, Endo Y (2003) Mouse SWAM1 and SWAM2 are antibacterial proteins composed of a single whey acidic protein motif. J Immunol 170: 1973–1979. PubMed: 12574366.
|
[56] | Yenugu S, Richardson RT, Sivashanmugam P, Wang Z, O’Rand MG et al. (2004) Antimicrobial activity of human EPPIN, an androgen-regulated, sperm-bound protein with a whey acidic protein motif. Biol Reprod 71: 1484–1490. doi:10.1095/biolreprod.104.031567. PubMed: 15229136.
|
[57] | Jia YP, Sun YD, Wang ZH, Wang Q, Wang XW et al. (2008) A single whey acidic protein domain (SWD)-containing peptide from fleshy prawn with antimicrobial and proteinase inhibitory activities. Aquaculture 284: 246–259. doi:10.1016/j.aquaculture.2008.07.046.
|
[58] | Sperstad SV, Haug T, Paulsen V, Rode TM, Strandskog G, Solem ST, Styrvold OB, Stensv?g K (2009) Characterization of crustins from the hemocytes of the spider crab, Hyas araneus, and the red king crab, Paralithodes camtschaticus. Dev Comp Immunol 33: 583–591. doi:10.1016/j.dci.2008.10.010. PubMed: 19041340.
|
[59] | Dyar MT, Ordal EJ (1946) Electrokinetic studies on bacterial surfaces I: effects of surface-active agents on electrophoretic mobilities of bacteria. J Bacteriol 51: 149-167.
|
[60] | Avi-Dor Y, Yaniv H (1953) Relation between changes in the stability of Pasteurella tularensis suspensions and in its bacterial population. I. the stability of suspensions of Pasteurella tularensis in the presence of electrolytes. J Bacteriol 66: 1-5. PubMed: 13069457.
|
[61] | Krusong K, Poolpipat P, Supungul P, Tassanakajon A (2012) A comparative study of antimicrobial properties of crustinPm1 and crustinPm7 from the black tiger shrimp Penaeus monodon. Dev Comp Immunol 36: 208-215. doi:10.1016/j.dci.2011.08.002. PubMed: 21855569.
|
[62] | Amparyup Piti, Donpudsa Suchao, Tassanakajon Anchalee (2008) Shrimp single WAP domain (SWD)-containing protein exhibits proteinase inhibitory and antimicrobial activities. Dev Comp Immunol 32: 1497-1509. doi:10.1016/j.dci.2008.06.005. PubMed: 18602420.
|