Signplní dráha jak/stat je jednou ze základních signálních drah, která u cílových buněk ovlivňuje genovou expresi pomocí extracelulárníh signálů



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7.LITERATURA



Adams, E.J., Parham, P. 2001. Genomic analysis of common chimpanzee major histocompatibility complex class I genes. Immunogenetics 53: 200–208.
Adams, E.J., Cooper, S., Parham, P. 2001. A novel, nonclassical MHC class I molecule specific to the common chimpanzee. J. Immunol. 167: 3858–3869.
Altuvia, Y., Margalit, H. 2004. A structure-based approach for prediction of MHC-binding peptides. Methods 34: 454–459.
Apanius, V., Penn, D., Slev, P.R., Ruff, L.R., Potts, W.K. 1997. the nature of selection on the major histocompatibility complex. Crit. Rew. Immunol. 17: 179–224.
Bjorkman, P.J., Saper, M.A., Samraoui, B., Bennett, W.S., Strominger, J.L., Wileyn, D.C. 1987. The foreing antigen binding site and T cell recognition region of class I histocompatibility antigens. Nature 329: 512–518.
Bodmer, J.G., Marsh, S.G.E., Albert, E.D. 1997. HLA: Genetic Diversity of HLA. In Charron D. ed. Paris: EDK
Brodsky, F.M., Lem, L., Bresnaham, P.A. 1998. Presentation of antigenic peptides by products of the major histocompatibility complex. J. Pept. Sci. 7: 182–194.
Brown, J.L., Eklund, A. 1994. Kin recognition and the major histocompatibility complex: an integrative review. Am. Naturalist. 143: 425–461.
Carrington, M., Nelson, G.W., Martin, M.P. 1999. HLA and HIV-1: heterozygote advantage and B*35-Cw*04 disadvantage. Science 283: 1748–1752.
Chardon, P., Renard, C., Gaillard, C.R., Vaiman, M. 2000. The porcine major histocompatibility complex and paralagous regions: a review. Genet. Sel. Evol. 32: 109–128.
Chicz, R., Urban, R., Gorga, J., Vignaili, D., Lane, W., Strominger, J. 1993. Specificity and promiscuity among naturally processed peptides bound to HLA-DR alleles. J. Exp. Med. 178: 27–47.
Clark, M.S., Shaw, L., Kelly, A., Snell, P., Elgar, G. 2001. Charac terization of the MHC class I region of the Japanese pufferfish (Fugu rubripes). J. Immunol. 165: 4446–4452
Clarke, B., Kirby, D.R.S. 1996. Maintenance of histocompatibility polymorphism. Nature 211: 999–1000.
Corkum, L.D., Sapota, M.R., Skora, K.E. 2004. The round goby, Neogobius melanostomus, a fish invader on both sides of the Atlantic Ocean. Biol. Invasions 6: 173–181.
Davis, M.M., Bjorkman, P.J. 1988. T-cell antigen receptor genes and T-cell recognition. Nature 334: 395–402.
Dixon, B., Nagelkerke, L.A.J., Sibbing, F.A., Egberts, E., Stet, R.J.M. 1996. Evolution of Mhc class II β chain-encoding genes in the Lake Tana barbel species fock (Barbus intermedius). Immunogenetics 44: 419–431.

Doherty, P.C., Zinkernagel, R.M. 1975. A biological role for the major histocompatibility antigens. Lancet 1: 1406–1409.
Ebert, D. 1994. Virulence and local adaption of a horizontally transmitted parasite. Science 265: 1084–1086.
Edwards, S.V., Grahn, M., Potts, W.K. 1995. Dynamics of MHC evolution in birds and crocodilians: amplification of class II genes with degenerate primers. Mol. Ecol. 4:.719–729.
Ellis, S.A., Ballingall, K.T. 1999. Cattle MHC: evolution in action? Immunol. Rev. 167:.159–168.
Figueroa, F., Gunther, E., Klein, J. 1988. MHC polymorphism pre-dating speciation. Nature 335: 265–267.
Figueroa, F., Mayer, W. E., Sultmann, H., O´hUigin, C., Tichy, H., Satta, Y., Takezaky, N., Klein, J. 2000. Mhc class IIB gene evolution in East African cichlid fishes. Imunnogenetics 51: 556–575.
Flajnik, M.F., Kasahara, M., Shum, B.P., Salter-Cid, L., Taylo,r E., Du Pasquier, L. 1993. A novel type of class I gene organization in vertebrates: a large family of non-MHC-linked class I genes is expressed at the RNA level in the amphibian Xenopus. EMBO J. 12: 4385–4396.
Flajnik, M.F., Ohta, Y., Namikawa-Yamada, C., Nonaka, M. 1999. Insight into the primordial MHC from studies in ectothermic vertebrates. Immunol. Rev. 167: 59–67.
Freeman-Gallant, C.R., Johnson, E.M., Saponara, F., Stanger, M. 2002. Variation at the major histocompatibility complex in savannah sparrows. Mol. Ecol. 11: 1125–1130.
Garrigan, D., Hedrick, P.W. 2001. Class I MHC polymorphism and evolution in endangered California Chinook and other Pacific salmon. Imunnogenetics 53: 483–489.
Germain, R.N., Margulies, D.H. 1993. The biochemistry and cell biology of antigen processing and presentation. Annu. Rev. Imm. 11: 403–450.
Gilbert, S.C., Plebanski, M., Gupta, S. 1998 Association of malaria parasite population structure, HLA, and immunological antagonism. Science 279: 1173–1177.
Grabowska, J. 2005. Reproductive biology of racer goby Neogobius gymnotrachelus in the Włocławski Reservoir (Vistula River, Poland). J. Appl. Ichthyol. 21: 296–299.
Grabowska, J., Grabowski, M. 2005. Diel-feeding activity in early summer of racer goby Neogobius gymnotrachelus (Gobiidae): a new invader in the Baltic basin. J. Appl. Ichthyol. 21: 282–286.
Graser, R., Ohuigin, C., Vincek, V., Meye, A., Klein, J. 1996 Transspecies polymorphism of class II MHC loci in danio fishes. Immunogenetics 44: 36-48.

Guillemot, F., Billault, A., Pourquie, O., Behar, G., Chausse, A.M., Zoorob, R., Kreibich, G., Auffray, C. 1988. A molecular map of the chicken major histocompatibility complex: the class II beta genes are closely linked to the class I genes and the nucleolar organizer. EMBO J. 7: 2775–2785.
Haldane, J.B.S. 1949. Disease and evolution. Ric. Scientifica 19. 168-174.
Hamilton, W.D. 1986. Evolutionary Processes and Theory. In Karlin, S., Nevo, E. ed. Academic Press, New York.
Hamilton, W.D., Zuk, M. 1982. Heritable true fitness and bright birds: a role for parasites? Science 218: 384–387.
Hansen, J.D., Strassburger, P., Thorgaard, G.H., Young, W.P., Du Pasquier, L. 1999. Expression, linkage, and polymorphism of MHCrelated genes in rainbow trout, Oncorhynchus mykiss. J. Immunol. 163: 774–786.
Hayes, R. 2002. "Neogobius melanostomus" [On-line]. Animal Diversity Web. [cit. 24.dubna 2008].

http://animaldiversity.ummz.umich.edu/site/accounts/information/Neogobius_melanostomus.html.


Hodgkin, P.D. 1998. The role of cross-reactivity in the development of antibody responses. Immunologist 6: 223–226.
Hořejší, V., Bartůňková, J. 2005. Základy imunologie. 3. ed. Triton: Praha
Hughes, A.L., Hughes, M.K. 1995. Natural selection on the peptide-binding regions of major histocompatibility complex molecules. Immunogenetics 42: 233–243.
Hughes, A.L., Nei, M. 1988. Pattern of nukleotide substitution at major histocompatibility complex clas I locireveals overdominant selection. Nature 355: 167–170.
Hughes, A.L., Yeager, M. 1998. Natural selection at major histocompatibility complex loci of vertebrates. Annu. Rev. Genet. 32: 415–435.
Hurt, P., Walter, L., Sudbrak, R., Klages, S., Muller, I., Shiina, T., Inoko, H., Lehrach, H., Günther, E., Reinhardt, R., Himmelbauer, H. 2004. The genomic sequence and comparative analysis of the rat major histocompatibility complex. Genome. Res. 14: 631–639.

Jeffery, K.J.M., Bangham, C.R.M. 2000. Do infectious desease drive MHC diversity? Microb. Infect. 2: 1335–1341.
Jordan, W.C., Bruford, M.W. 1998. New perspectives on mate choice and the MHC. Heredity 81: 239–245.
Jurajda, P., Černý, J., Polačik, M., Valová, Z., Janáč, M., Blažek, R., Ondračková, M. 2005. The recent distribution and abundance of non-native Neogobius fishes in the Slovak section of the River Danube. J. Appl. Ichthyol. 21: 319–323.
Kakareko, T., Żbikowski, J., Żytkowicz, J. 2005. Diel partitioning in summer of two syntopic neogobiids from two different habitats of the lower Vistula River, Poland. J. Appl. Ichthyol. 21: 292–295 .
Kandil, E., Namikawa, C., Nonaka, M., Greenberg, A.S., Flajnik, M.F., Ishibashi, T., Kasahara, M. 1996. Isolation of low molecular mass polypeptide complementary DNA clones from primitive verte- brates: implications for the origin of MHC class I-restricted antigen presentation. J. Immunol. 156: 4245–4253.
Kaufman, J., Skjoedt, K., Salomonsen, J. 1990. The MHC molecules of nonmammalian vertebrates. Immunol. Rev. 113: 83–117.
Kaufman, J., Volk, H., Wallny, H.J. 1995. A “Minimal Essential MHC” and an “Unrecognized MHC”: two extremes in selection for polymorphism. Immunol. Rev. 143: 63–88.
Kaufman, J., Milne, S., Gobel, T.W.F., Walker, B.A., Jacob, J.P., Auffray, C., Zoorob, R., Beck, S. 1999a. The chicken B locus is a minimal major histocompatibility complex. Nature 401: 923–925.
Kaufman, J., Jacob, J.P., Shaw, I., Walker, B., Milne, S., Beck, S., Salomonsen, J. 1999b. Gene organization determines evolution of function in the chicken MHC. Immunol. Rev. 167: 101–117.
Kimura, M. 1968. Evolutionary rate at the molecular level. Nature 217: 624–626.
Klein, J. 1986. Natural history of the major histocompatibility komplex, 1st ed. John Wiley and Sons: New york, Chichester, Brisbane, Toronto, Singapure.
Klein, J., Figueroa, F., Nagy, Z.A. 1983. Genetics of the major histocompatibility complex: the final act. Annu. Rev. Immunol. 1:119–142.

Klein, J., Figueroa, F. 1986. Evolutionof the major histocompatibility complex. Crit. Rev. Immunol. 6: 295–386.
Klein, J., Bontrop, R.E., Dawkins, R.L., Erlich, H.A., Gyllensten, U.B., Heise, E.R., Jones, P.P., Parham, P., Wakeland, E.K., Watkins, D.I. 1990. Nomenclature for the major histocompatibility complexes of different species: a proposal. Immunogenetics 31: 217–219.
Klein, J., O´hUigin, C. 1993. Composite origin of major histocompatibility complex genes. Curr. Opin. Genet. Dev. 3: 923–930.
Klein, J., Sato, A. 1998. Birth of the major histocompatibility complex. Scand. J. Immunol. 47: 199–209.
Koopmann, J.O., Hämmerling, G.J., Momburg, F. 1997. Generation, intracellular transport and loading of peptides associated with MHC class I molecules. Curr. Opin. Immunol. 9: 80–88.
Krejsek, J., Kopecký, O. 2004. Klinická imunologie, 1 ed. nucleus HK, Pardubice.
Kuroda, N., Figueroa, F., O´hUigin, C., Klein, J. 2002. Evidence, that the separation of MHC class II from class I loci in the zebrafish, Danio rerio, occured by translocation. Immunogenetics 54: 418–430.
Kvach, Y. 2005. A comparative analysis of helminth faunas and infection parameters of ten species of gobiid fishes (Actinopterygii: Gobiidae) from the North-Western Black Sea. Acta Ichthyol. Piscat. 35: 103–110.
Lanzavecchia, A., Reid, P.A., Watts, C. 1992. Irreversible association of peptides with class II MHC molecules in living cells. Nature 357: 249–252.
L’avrinčikova, M., Kováč, V., Katina, S. 2005. Ontogenetic variability in external morphology of round goby Neogobiu melanostomus from the Middle Danube, Slovakia. J. Appl. Ichthyol. 21: 328–334.
Lienert, K., Parham, P. 1996. Evolution of MHC class I genes in higher primates. Immunol. Cell. Biol. 74: 349–356.
Lively, C.M., Dybdahl, M.F. 2000. Parasite adaptation to locally common host genotypes. Nature 405: 679–681.
MacInnis, A.J. 1976. How parasites find hosts: some thoughts on the inception of host-parasite integration. Ecological aspects of parasitology. C. R. Kennedy. Amsterdam, North Holland publishing company
Matzinger, P. 1994. Tolerance, danger and the extended family. Annu. Rev. Immunol. 12: 991–1045.
MHC Sequencing Consortium 1999. Complete sequence and gene map of a human major histocompatibility complex. Nature 401: 921–923.
Michalová, V., Murray, B.W., Sültmann, H., Klein, J. 2000. A contig map of the Mhc class I genomic region in the zebrafish reveals ancient synteny. J. Immunol. 164: 5296–5305
Miller P.J. 2003. The freshwater fishes of Europe. AULA-Verlag GmbH Wiebelsheim, 404 pp.
Miller, H.C., Belov, K., Daugherty, C.H. 2005. Characterization of MHC class II genes from an ancient reptile lineage, Sphenodon (tautara). Immunogenetics 57: 833–891.
Nelson, C.A., Fremont, D.H. 1999. Structural principles of MHC class II antigen presentation. Rev. Immunogenet. 1: 47–59.
Naruse, K., Shima, A., Nonaka, M. 2000. MHC gene organization in the bony fish, medaka. In Major Histocompatibility Complex: Evolution, Structure, and Function. M. Kasahara, ed. Tokyo: Springer-Verlag
Nonaka, M., Namikawa, C., Kato, Y., Sasaki, M., Salter-Cid, L., Flajnik, M.F. 1997. Major histocompatibility complex gene mapping in the amphibian Xenopus implies a primordial organization. Proc. Natl. Acad. Sci. USA 94: 5789–5791.
Nonaka, M., Matsuo, M., Naruse, K., Shima, A. 2001. Comparative genomics of medaka: the major histocompatibility complex (MHC). Mar. Biotechnol. (NY) 3: 141–144.
Nowak, M.A., Tarczy-Hornoch, K., Austy, J.M. 1992. The optimal number of major histocompatibility complex molecules in an individual. Proc. Natl. Acad. Sci. USA 89: 10896–10899.
Ohta, T. 1999. Effect of gene conversion on polymorphic patterns at major histocompatibility complex loci. Immunol. Rev. 167: 319–325.
Ondračková, M., Dávidová, M., Pečínková, M., Blažek, R., Gelnar, M., Válová, Z., Černý, J., Jurajda, P. 2005. Metazoan Parasites of Neogobius fishes in the Slovak section of the river Danube. J. Appl. Ichthyol. 21: 345–349.

Ottová, E., Šimková, A., Martin, J.F., Bellocq, J.G., Gelnar, M., Allienne, J.F., Morand, S. 2005. Evolution and trans-species polymorphism of MHC class IIβ genes in cyprinid fish. Fish Shell. Immunol. 18: 19 –222.
Parham, P., Ohta, T. 1996. Population biology of antigen presentation by MHC class I molecules. Science 272: 67–74.
Paterson, S. 2005. No evidence for specifity between host and parasite genotypes in experimental Strongyloides ratti (Nematoda) infections. Int. J. Parasitol. 35: 1539–1545.
Penn, D.J. 2002. The scent of genetic compatibility: sexual selectin and the major histocompatibility complex. Ethology 108: 1–21.
Peters, P., Neefjes, J., Oorschot, V., Ploegh, H., Geuze, H. 1991. Segregation of MHC class II molecules from MHC class I molecules in the golgi complex for transport to lysosomal compartments. Nature 349: 669–676.
Potts, W.K., Wakeland, E.K. 1990. Evolution of diversity at the major histocompatibility complex. Trends Ecol. Evol. 5: 181–186.

Potts, W. K., Manning, C.J., Wakeland, E.K. 1991. Mating patterns in seminatural populations of mice influenced by MHC genotype. Nature 352: 619-621.


Prenter, J., MacNeil, C., Dick, J.T.A., Dunn A.M. 2004. Roles of parasites in animal invasions. Trends Ecol. Evolut. 19: 385-390.
Reusch, T.B., Haberli, M.A., Aeschlimann, P.B., Milinski, M. 2001. Female sticklebacks count alleles in a strategy of sexual selection explaining MHC polymorphism. Nature 414:
30 –302
Rokicki, J., Rolbiecki, L. 2002. Colonization of the round goby, Neogobius melanostomus (Gobiidae) by parasites in the new environment of the Gulf of Gdańsk (Southern Baltic), Wiad. Parazytol. 48: 197–200.
Santambrogio, L., Sato, K., Fischer, F.R., Dorf, M.E., Stern, L.J. 1999. Abundant empty MHC molecules on the surface of immature dendritic cells. Proc. Natl. Acad. Sci. U.S.A. 96: 15050–15055.
Savage, P.A., Boniface, J.J., Davis, M.M. 1999. A kinetic basis for T cell receptor repertoire selection during an immune response. Immunity 10: 485–492.
Shum, B.P., Avila, D., Du Pasquier, L., Kasahara, M., Flajnik, M.F. 1993. Isolation of a classical class I cDNA from an amphibian. Evidence for only one class I locus in the Xenopus MHC. J. Immunol. 151: 5376–5386.
Takahata, N., Nei, M. 1990. Allelic genealogy under overdominant and frequency-dependent selection and polymorphism of major histocompatibility complex loci, Genetics 124: 967–978.
Thursz, M.R., Thomas, H.C., Greenwood, B.M., Hill, A.V. 1997. Heterozygote advantage for HLA class-II type in hepatitis B virus infection. Nat. Genet. 17: 11–12.
Trowsdale, J., Parham, P. 2004. Defense strategies and immunerelated genes. Eur. J. Immunol. 34: 7–17.
Van Valen, L. 1973. A new evolutionary law. Evolution. Theor. 1: 1–30.
Vogel, T. U., Evans, D.T., Urvater, J.A., O'Connor, D.H., Hughes, A.L., Watkins, D. I. 1999. Major histocompatibility complex class I genes in primates: co-evolution with pathogens. Immunol. Rev. 167: 327–337.
Wagner, J.L. 2003. Molecular organization of the canine major histocompatibility complex. J. Hered. 94: 23–26.
Wakeland, E.K., Boehme, S., She, J.X., Lu, C.C., McIndoe, R.A., Cheng, I., Ye, Y., Potts, W.K. 1990. Ancestral polymorphism of MHC class II genes – divergente allele advantage. Imunnol. Res. 9: 115–122.
Walter, L., Hurt, P., Himmelbauer, H., Sudbrak, R., Günther, E. 2002. Physical mapping of the major histocompatibility complex class II and class III regions of the rat. Immunogenetics 54: 268–275.
Wiegertjes, G.F., Egberts, E., Stet, R.J.M. 1997. Segregation of MHC class I and class II genes in the common carp (Cyprinus carpio L.). Dev. Comp. Immunol. 21: 105.
Wood, P. 2006. Understanding immunology, 2nd ed. Pearson Education Limited: Edinburgh
Xie, T., Rowen, L., Aguado, B., Ahearn, M.E., Madan, A., Qin, S., Campbell, R.D., Hood, L. 2003. Analysis of the gene-dense major histocompatibility complex class III region and its comparison to mouse. Genome. Res. 13: 2621–2636.
Yuhki, N., Beck, T., Stephens, R.M., Nishigaki, Y., Newmann, K., OBrien, S.J. 2003. Comparative genome organization of human, murine and feline MHC class II region. Genome. Res. 13: 1169–1179.

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