Mécanismes de détoxication du cadmium chez les eucaryotes
227
mas D (2005). Inducible dissociation of
SCF(Met30) ubiquitin ligase mediates a
rapid transcriptional response to cadmium.
EmboJ, 24 : 521-532.
Baudouin-Cornu P, Labarre J (2006). Regulation of the cadmium stress response
through SCF-like ubiquitin ligases: comparison between Saccharomyces cerevisiae,
Schizosaccharomyces pombe and mammalian cells. Biochimie, 88 : 1673-1685.
Bertin G, Averbeck D (2006). Cadmium: cellular effects, modifications of biomolecules, modulation of DNA repair and genotoxic consequences (a review). Biochimie,
88: 1549-1559.
Borrelly GP, Harrison MD, Robinson AK,
Cox SG, Robinson NJ, Whitehall SK
(2002). Surplus zinc is handled by Zyml
metallothionein and Zhf endoplasmic reticulum transporter in Schizosaccharomyces
J Biol Chern, 277 : 30394-30400.
Bourdineaud JP, Baudrimont M, Gonzalez P,
Moreau JL (2006). Challenging the model
for induction of metallothionein gene
expression. Biochimie, 88 : 1787-1792.
Chen D, Toone WM, Mata J, Lyne R, Burns
G, Kivinen K, Brazma A, Jones N, Bahler
J (2003). Global transcriptional responses
of fission yeast to environmental stress.
Mol Biol Cell, 14 : 214-229.
Chen WY, John JA, Lin CH, Chang CY
(2007). Expression pattern of metallothionein, MTF-1 nuclear translocation, and its
dna-binding activity in zebrafish (Danio
rerid) induced by zinc and cadmium. Environ Toxicol Chern, 26 : 110-117.
Clemens S (2006). Toxic metal accumulation,
responses to exposure and mechanisms of
-
tolerance in plants. Biochimie, 88 : 1707c
1719.
□
» Clemens S, Kim EJ, Neumann D, Schroeder
|
JI (1999). Tolerance to toxic metals by a
2
gene family of phytochelatin synthases
c from plants and yeast. Embo J, 18 : 3325:
3333.
8 Cole SP, Sparks KE, Fraser K, Loe DW, Grant
1
CE, Wilson GM, Deeley RG (1994). Phar®
macological characterization of multidrug
1
resistant MRP-transfected human tumor
|
cells. Cancer Res, 54 : 5902-5910.
8 Culotta VC, Howard WR, Liu XF (1994).
CRS5 encodes a metallothionein-like protein in Saccharomyces cerevisiae. J Biol
Chern, 269 : 25295-25302.
Dalton TP, He L, Wang B, Miller ML, Jin
L, Stringer KF, Chang X, Baxter CS,
Nebert DW (2005). Identification of mouse
SLC39A8 as the transporter responsible
for cadmium-induced toxicity in the testis.
Proc Natl Acad Sci USA, 102 : 3401-3406.
Dameron CT, Harrison MD (1998). Mechanisms for protection against copper toxicity. Am J Clin Nutr, 67 : 1091S-1097S.
Dameron CT, Smith BR, Winge DR (1989).
Glutathione-coated cadmium-sulfide crystallites in Candida glabrata. J Biol Chern,
264 : 17355-17360.
Ducruix C, Junot C, Fievet JB, Villiers F,
Ezan E, Bourguignon J (2006). New insights into the regulation of phytochelatin
biosynthesis in A. thaliana cells from
metabolite profiling analyses. Biochimie,
88 : 1733-1742.
Dutilleul C, Jourdain A, Bourguignon J,
Hugouvieux V (2008). The Arabidopsis
putative selenium-binding protein family:
Expression study and characterization of
SBP1 as a potential new player in cadmium
detoxification processes. Plant Physiology,
147 : 239-251.
Ecker DJ, Butt TR, Sternberg EJ, Neeper MP,
Debouck C, Gorman JA, Crooke ST (1986).
Yeast metallothionein function in metal ion
detoxification. J Biol Chern, 261 : 1689516900.
Egli D, Domenech J, Selvaraj A, Baiamurugan K, Hua H, Capdevila M, Georgiev O,
Schaffner W, Atrian S (2006). The four
members of the Drosophila metallothionein family exhibit distinct yet overlapping roles in heavy metal homeostasis and
detoxification. Genes Cells, 11 : 647-658.
Elisma F, Jumarie C (2001). Evidence for cadmium uptake through Nramp2: metal speciation studies with Caco-2 cells. Biochem
Biophvs Res Commun, 285 : 662-668.
Fauchon M, Lagniel G, Aude JC, Lombardia L, Soularue P, Petat C, Marguerie G,
Sentenac A, Werner M, Labarre J (2002).
Sulfur sparing in the yeast proteome in
response to sulfur demand. Mol Cell, 9 :
713-723.
Flanagan PR, McLellan JS, Haist J, Cherian
G, Chamberlain MJ, Valberg LS (1978).
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