Page 287 - The Toxicology of Fishes
P. 287
Receptor-Mediated Mechanisms of Toxicity 267
Linney, E., Upchurch, L., and Donerly, S. (2004b). Zebrafish as a neurotoxicological model. Neurotoxicol.
Teratol., 26, 709–718.
Long, Q., Meng, A., Wang, H., Jessen, J. R., Farrell, M. J., and Lin, S. (1997). GATA-1 expression pattern
can be recapitulated in living transgenic zebrafish using GFP reporter gene. Development, 124, 4105–4111.
3
Lorenzen, A. and Okey, A. B. (1990). Detection and characterization of [ H]2,3,7,8-tetrachlorodibenzo-p-
dioxin binding to Ah receptor in a rainbow trout hepatoma cell line. Toxicol. Appl. Pharmacol., 106, 53–62.
Luo, W., Fan, W., Xie, H., Jing, L., Ricicki, E. et al. (2005). Phenotypic anchoring of global gene expression
profiles induced by N-hydroxy-4-acetylaminobiphenyl and benzo[a]pyrene diol epoxide reveals correla-
tions between expression profiles and mechanism of toxicity. Chem. Res. Toxicol., 18, 619–629.
Lynch, M. and Force, A. (2000). The probability of duplicate gene preservation by subfunctionalization.
Genetics, 154, 459–473.
Ma, Q. (2001). Induction of CYP1A1: the AhR/DRE paradigm—transcription, receptor regulation, and
expanding biological roles. Curr. Drug Metab., 2, 149–164.
MacGregor, J. I. and Jordan, V. C. (1998). Basic guide to the mechanisms of antiestrogen action. Pharmacol.
Rev., 50, 151–196.
Maglich, J. M., Caravella, J. A., Lambert, M. H., Willson, T. M., Moore, J. T., and Ramamurthy, L. (2003).
The first completed genome sequence from a teleost fish (Fugu rubripes) adds significant diversity to the
nuclear receptor superfamily. Nucl. Acids Res., 31, 4051–4058.
Makynen, E. A., Kahl, M. D., Jensen, K. M., Tietge, J. E., Wells, K. L. et al. (2000). Effects of the mammalian
antiandrogen vinclozolin on development and reproduction of the fathead minnow (Pimephales promelas).
Aquat. Toxicol., 48, 461–475.
Malicki, J., Jo, H., Wei, X., Hsiung, M., and Pujic, Z. (2002). Analysis of gene function in the zebrafish retina.
Methods, 28, 427–438.
Manchester, D. K., Gordon, S. K., Golas, C. L., Roberts, E. A., and Okey, A. B. (1987). Ah receptor in human
placenta: stabilization by molybdate and characterization of binding of 2,3,7,8-tetrachlorodibenzo-p-
dioxin, 3-methylcholanthrene, and benzo[a]pyrene. Cancer Res., 47, 4861–4868.
Maples, N. L. and Bain, L. J. (2004). Trivalent chromium alters gene expression in the mummichog (Fundulus
heteroclitus). Environ. Toxicol. Chem., 23, 626–631.
Margulies, M., Egholm, M., Altman, W. E., Attiya, S., Bader, J. S. et al. (2005). Genome sequencing in
microfabricated high-density picolitre reactors. Nature, 437, 376–380.
Mathavan, S., Lee, S. G., Mak, A., Miller, L. D., Murthy, K. R. et al. (2005). Transcriptome analysis of
zebrafish embryogenesis using microarrays. PLoS Genet., 1, 260–276.
Mathew, L. K., Andreasen, E. A., and Tanguay, R. L. (2006). Aryl hydrocarbon receptor activation inhibits
regenerative growth. Mol. Pharmacol., 69, 257–265.
Matthews, J., Celius, T., Halgren, R., and Zacharewski, T. (2000). Differential estrogen receptor binding of
estrogenic substances: a species comparison. J Steroid Biochem. Mol. Biol., 74, 223–234.
McCauley, D. W. and Bronner-Fraser, M. (2006). Importance of SoxE in neural crest development and the
evolution of the pharynx. Nature, 441, 750–752.
Meng, A., Tang, H., Ong, B. A., Farrell, M. J., and Lin, S. (1997). Promoter analysis in living zebrafish
embryos identifies a cis-acting motif required for neuronal expression of GATA-2. Proc. Natl. Acad. Sci.
U.S.A., 94, 6267–6272.
Meng, A., Tang, H., Yuan, B., Ong, B. A., Long, Q., and Lin, S. (1999). Positive and negative cis-acting
elements are required for hematopoietic expression of zebrafish GATA-1. Blood, 93, 500–508.
Menuet, A., Pellegrini, E., Anglade, I., Blaise, O., Laudet, V. et al. (2002). Molecular characterization of three
estrogen receptor forms in zebrafish: binding characteristics, transactivation properties, and tissue distri-
butions. Biol. Reprod., 66, 1881–1892.
Merson, R. R. and Hahn, M. E. (2002). Are sharks susceptible to dioxins? cDNA cloning and characterization
of elasmobranch aryl hydrocarbon receptors. Mar. Environ. Res., 54, 410.
Meucci, V. and Arukwe, A. (2006). The xenoestrogen 4-nonylphenol modulates hepatic gene expression of
pregnane X receptor, aryl hydrocarbon receptor, CYP3A and CYP1A1 in juvenile Atlantic salmon (Salmo
salar). Comp. Biochem. Physiol. C Toxicol. Pharmacol., 142, 142–150.
Meyer, A. and Mindell, D. P. (2001). Homology evolving. Trends Ecol. Evol., 16, 434–440.
Meyer, J. N., Volz, D. C., Freedman, J. H., and Di Giulio, R. T. (2005). Differential display of hepatic mRNA
from killifish (Fundulus heteroclitus) inhabiting a Superfund estuary. Aquat. Toxicol., 73, 327–341.