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IDENTIFICATION
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| Name : Amine |
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| Surname : Nourani |
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| University Title : Assistant Professor |
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| Affiliation to Université Laval : |
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| Diploma : PhD |
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| Telephone (office) : (418) 525-4444 ext.: 15593 |
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| Telephone (laboratory) : (418) 525-4444 ext.: 16898 |
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| Fax : (418) 691-5439 |
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| Email : amine.nourani@crhdq.ulaval.ca |
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RESEARCH INTERESTS
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| Chromatin Dynamics Associated to Transcription Elongation |
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PUBLICATIONS
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Nourani A, Robert F and Fred Winston. Evidence that Spt2/Sin1, an HMG-like factor, plays roles in transcription elongation, chromatin structure, and genome stability in S. cerevisiae. Mol Cell Biol. 2006 Feb;26(4):1496-509.
Nourani A, Utley R.T, Allard S and Côté J 2004. Recruitment of the NuA4 complex poises the PHO5 promoter for chromatin remodeling and activation. EMBO. J. 2004 7; 23(13):2597-607
Nourani A, Howe L, Pray-Grant MG, Workman JL, Grant PA, Cote J. 2003. Opposite role of yeast ING family members in p53-dependent transcriptional activation. J Biol Chem. 23; 278(21):19171-5
A. Nourani, Y. Doyon, R.T. Utley, S. Allard, W.S. Lane and J. Côté. 2001. Role of an ING1 growth regulator in transcriptional activation and targeted histone acetylation by the NuA4 complex. Mol. Cell. Biol. 21(22). 7629-40
A. Eisen, R. Utley, A. Nourani, S. Allard , P. Schmidt, W. S. Lane, J. C. Lucchesi and J. Côté. 2001. Homologues of Drosophila dosage compensation proteins in the NuA4 acetyltransferase complex. J. Biol. Chem. 276: 3484-3491.
A. Nourani*, L. Galarneau*, A. A. Boudreault, Y. Zhang, L. Héliot, S. Allard, J. Savard, W.S. Lane, D. J. Stillman and J. Côté. 2000. Multiple links between NuA4 Histone Acetyltransferase complex and epigenetic control of transcription. Mol.Cell (5). 927-937. (*equal contribution)
Nourani, A., Wesolovski-louvel, M., Delaveau, T., Jacq, C. and Delahodde, A. Multiple Drug Resistance Phenomenon in the Yeast Saccharomyces cerevisiae: Involvement of two Hexose Transporters. Mol. Cell. Biol 17 (9). 5453-5460.
Nourani, A., Papajova, D., Delahodde, A., Jacq, C. and Subik, J. 1997. Clustered aminoacid substitution in the yeast transcription regulator Pdr3p increase pleiotropic drug resistance and identify a new regulatory domain. Mol. Gen. Genet 256: 397-405.
Mahé, Y., Parle, A., Nourani, A., Delahodde, A. and Kuchler, K. 1996. The ATP-Binding cassette multidrug transporter Snq2 of Saccharomyces cerevisiae: a novel target for the transcription factors Pdr1p and Pdr3p. Mol. Microbiol 20 (1), 109-117.
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TEAM MEMBERS
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Name: Anne Ruffiange, M Sc Position: Lab Manager Email:Anne.Rufiange@crhdq.ulaval.ca
Name: Lynda Gamar Position: Post-doc Email: Lygamar@hotmail.com
Name: Wajid Bhat Position: PhD student Email: wajidbhat@gmail.com
Name: Sandra Piquet Position: undergrad Email: spiquet20@hotmail.com
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