Keyword search (4,163 papers available)

"Dumeaux V" Authored Publications:

Title Authors PubMed ID
1 Candida albicans exhibits heterogeneous and adaptive cytoprotective responses to anti-fungal compounds Dumeaux V; Massahi S; Bettauer V; Mottola A; Dukovny A; Khurdia SS; Costa ACBP; Omran RP; Simpson S; Xie JL; Whiteway M; Berman J; Hallett MT; 37888959
BIOLOGY
2 A metagenomic-based study of two sites from the Barbadian reef system Simpson S; Bettauer V; Ramachandran A; Kraemer S; Mahon S; Medina M; Vallès Y; Dumeaux V; Vallès H; Walsh D; Hallett MT; 37009568
BIOLOGY
3 A Deep Learning Approach to Capture the Essence of Candida albicans Morphologies Bettauer V; Costa ACBP; Omran RP; Massahi S; Kirbizakis E; Simpson S; Dumeaux V; Law C; Whiteway M; Hallett MT; 35972285
BIOLOGY
4 The zinc cluster transcription factor Rha1 is a positive filamentation regulator in Candida albicans Omran RP; Ramírez-Zavala B; Aji Tebung W; Yao S; Feng J; Law C; Dumeaux V; Morschhäuser J; Whiteway M; 34849863
PERFORM
5 ChIP-seq protocol for sperm cells and embryos to assess environmental impacts and epigenetic inheritance Lismer A; Lambrot R; Lafleur C; Dumeaux V; Kimmins S; 34159325
PERFORM
6 Signal-mediated localization of Candida albicans pheromone response pathway components Costa ACBP; Omran RP; Law C; Dumeaux V; Whiteway M; 33793759
PERFORM
7 Histone H3 lysine 4 trimethylation in sperm is transmitted to the embryo and associated with diet-induced phenotypes in the offspring. Lismer A, Dumeaux V, Lafleur C, Lambrot R, Brind'Amour J, Lorincz MC, Kimmins S 33596408
PERFORM
8 Sperm histone H3 lysine 4 trimethylation is altered in a genetic mouse model of transgenerational epigenetic inheritance Lismer A; Siklenka K; Lafleur C; Dumeaux V; Kimmins S; 33068438
PERFORM
9 Atrx Deletion in Neurons Leads to Sexually Dimorphic Dysregulation of miR-137 and Spatial Learning and Memory Deficits. Tamming RJ, Dumeaux V, Jiang Y, Shafiq S, Langlois L, Ellegood J, Qiu LR, Lerch JP, Bérubé NG 32610139
PERFORM
10 Histone deacetylase 1 and 2 drive differentiation and fusion of progenitor cells in human placental trophoblasts. Jaju Bhattad G, Jeyarajah MJ, McGill MG, Dumeaux V, Okae H, Arima T, Lajoie P, Bérubé NG, Renaud SJ 32366868
PERFORM
11 The time-varying effect of radiotherapy after breast-conserving surgery for DCIS. Rakovitch E, Sutradhar R, Hallett M, Thompson AM, Gu S, Dumeaux V, Whelan TJ, Paszat L 31368035
PERFORM
12 Screening of Candida albicans GRACE library revealed a unique pattern of biofilm formation under repression of the essential gene ILS1. Costa ACBP, Omran RP, Correia-Mesquita TO, Dumeaux V, Whiteway M 31235750
PERFORM
13 Interactions between the tumor and the blood systemic response of breast cancer patients. Dumeaux V, Fjukstad B, Fjosne HE, Frantzen JO, Holmen MM, Rodegerdts E, Schlichting E, Børresen-Dale AL, Bongo LA, Lund E, Hallett M 28957325
BIOLOGY
14 Mms21: A Putative SUMO E3 Ligase in Candida albicans That Negatively Regulates Invasiveness and Filamentation, and Is Required for the Genotoxic and Cellular Stress Response. Islam A, Tebbji F, Mallick J, Regan H, Dumeaux V, Omran RP, Whiteway M 30530734
PERFORM
15 Role of SUMOylation in differential ERα transcriptional repression by tamoxifen and fulvestrant in breast cancer cells. Traboulsi T, El Ezzy M, Dumeaux V, Audemard E, Mader S 30190545
PERFORM

 

Title:Role of SUMOylation in differential ERα transcriptional repression by tamoxifen and fulvestrant in breast cancer cells.
Authors:Traboulsi TEl Ezzy MDumeaux VAudemard EMader S
Link:https://www.ncbi.nlm.nih.gov/pubmed/30190545?dopt=Abstract
DOI:10.1038/s41388-018-0468-9
Publication:Oncogene
Keywords:
PMID:30190545 Category:Oncogene Date Added:2019-04-15
Dept Affiliation: PERFORM
1 Institute for Research in Immunology and Cancer, Montréal, QC, H3C 3J7, Canada.
2 Department of Biochemistry and Molecular Medicine, Université de Montréal, Montréal, QC, H3C 3J7, Canada.
3 PERFORM Centre, Concordia University, Montréal, QC, H4B 1R6, Canada.
4 Institute for Research in Immunology and Cancer, Montréal, QC, H3C 3J7, Canada. sylvie.mader@umontreal.ca.
5 Department of Biochemistry and Molecular Medicine, Université de Montréal, Montréal, QC, H3C 3J7, Canada. sylvie.mader@umontreal.ca.

Description:

Role of SUMOylation in differential ERa transcriptional repression by tamoxifen and fulvestrant in breast cancer cells.

Oncogene. 2019 02;38(7):1019-1037

Authors: Traboulsi T, El Ezzy M, Dumeaux V, Audemard E, Mader S

Abstract

Antiestrogens (AEs) are widely used for treatment of estrogen receptor alpha (ERa)-positive breast cancer, but display variable degrees of partial agonism in estrogen target tissues and breast cancer (BC) cells. The fact that BC cells resistant to selective ER modulators (SERMs) like tamoxifen (Tam) can still be sensitive to pure AEs, also called selective ER downregulators, suggests different mechanisms of action, some of which may contribute to the more complete suppression of estrogen target genes by pure AEs. We report herein that pure AEs such as fulvestrant induce transient binding of ERa to DNA, followed by rapid release after 30-40?min without loss of nuclear localization. Loss of DNA binding preceded receptor degradation and was not prevented by proteasome inhibition. Chromatin was less accessible in the presence of fulvestrant than with estradiol or Tam as early as 20?min following treatment, suggesting that chromatin remodeling by pure AEs at ERa target regions prevents transcription in spite of receptor binding. SUMO2/3 marks were detected on chromatin at the peak of ERa binding in cells treated with pure AEs, but not SERMs. Furthermore, decreasing SUMOylation by overexpressing the deSUMOylase SENP1 significantly delayed receptor release from DNA and de-repressed expression of estrogen target genes in the presence of fulvestrant, both in ERa-expressing MCF-7 cells and in transiently transfected ER-negative SK-BR-3 cells. Finally, mutation V534E, identified in a breast metastasis resistant to hormonal therapies, prevented ERa modification and resulted in increased transcriptional activity of estrogen target genes in the presence of fulvestrant in SK-BR-3 cells. Together, our results establish a role for SUMOylation in achieving a more complete transcriptional shut-off of estrogen target genes by pure AEs vs. SERMs in BC cells.

PMID: 30190545 [PubMed - indexed for MEDLINE]





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