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ÉCOLE DOCTORALE DES SCIENCES DE LA VIE ET DE LA SANTÉ
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ÉCOLE DOCTORALE DES SCIENCES DE LA VIE ET DE LA SANTÉ

Sophie Jaeger

ÉCOLE DOCTORALE DES SCIENCES DE LA VIE ET DE LA SANTÉ Alternate Text
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Rapports de stage

ÉCOLE DOCTORALE DES SCIENCES DE LA VIE ET DE LA SANTÉ

Sophie Jaeger

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214 pages

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Histone sumoylation is a negative regulator in Saccharomyces cerevisiae and
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Histone sumoylation is a negative regulator in Saccharomyces cerevisiae and

Cyril

Histone sumoylation is a negative regulator in Saccharomyces cerevisiae and Alternate Text
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Etudes supérieures

Histone sumoylation is a negative regulator in Saccharomyces cerevisiae and

Cyril

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30 pages

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Knockdown of menin affects pre-mRNA processing and promoter fidelity at the interferon-gamma inducible IRF1gene
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Knockdown of menin affects pre-mRNA processing and promoter fidelity at the interferon-gamma inducible IRF1gene

Auriemma, Shah Shaili, Linden, Henriksen

Knockdown of menin affects pre-mRNA processing and promoter fidelity at the interferon-gamma inducible IRF1gene Alternate Text
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Savoirs

Knockdown of menin affects pre-mRNA processing and promoter fidelity at the interferon-gamma inducible IRF1gene

Auriemma, Shah Shaili, Linden, Henriksen

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17 pages

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ÉTUDE
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ÉTUDE

ÉTUDE Alternate Text
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Savoirs

ÉTUDE

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22 pages

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Rôles distincts des différentes formes de méthylation de H3K4 dans deux mécanismes de répression transcriptionnelle et mise en évidence d une nouvelle voie de surveillance moléculaire liée à l excès d histones libres, Disctincts roles for different formes of H3K4 methylation in two transcriptional repression mechanisms and discovery of a new molecular surveillance pathway linked to an excess of free histones
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Rôles distincts des différentes formes de méthylation de H3K4 dans deux mécanismes de répression transcriptionnelle et mise en évidence d'une nouvelle voie de surveillance moléculaire liée à l'excès d'histones libres, Disctincts roles for different formes of H3K4 methylation in two transcriptional repression mechanisms and discovery of a new molecular surveillance pathway linked to an excess of free histones

Vincent Oréal

Rôles distincts des différentes formes de méthylation de H3K4 dans deux mécanismes de répression transcriptionnelle et mise en évidence d une nouvelle voie de surveillance moléculaire liée à l excès d histones libres, Disctincts roles for different formes of H3K4 methylation in two transcriptional repression mechanisms and discovery of a new molecular surveillance pathway linked to an excess of free histones Alternate Text
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Savoirs

Rôles distincts des différentes formes de méthylation de H3K4 dans deux mécanismes de répression transcriptionnelle et mise en évidence d'une nouvelle voie de surveillance moléculaire liée à l'excès d'histones libres, Disctincts roles for different formes of H3K4 methylation in two transcriptional repression mechanisms and discovery of a new molecular surveillance pathway linked to an excess of free histones

Vincent Oréal

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204 pages

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Factors influencing heterogeneity of radiation-induced DNA-damage measured by the alkaline comet assay
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Factors influencing heterogeneity of radiation-induced DNA-damage measured by the alkaline comet assay

Seidel Clemens, Lautenschläger Christine, Dunst Jürgen, Müller Arndt-Christian, Muller

Factors influencing heterogeneity of radiation-induced DNA-damage measured by the alkaline comet assay Alternate Text
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Factors influencing heterogeneity of radiation-induced DNA-damage measured by the alkaline comet assay

Seidel Clemens, Lautenschläger Christine, Dunst Jürgen, Müller Arndt-Christian, Muller

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10 pages

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Acetate supplementation modulates brain histone acetylation and decreases interleukin-1β expression in a rat model of neuroinflammation
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Acetate supplementation modulates brain histone acetylation and decreases interleukin-1β expression in a rat model of neuroinflammation

Soliman, Houdek, Rosenberger, Smith

Acetate supplementation modulates brain histone acetylation and decreases interleukin-1β expression in a rat model of neuroinflammation Alternate Text
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Acetate supplementation modulates brain histone acetylation and decreases interleukin-1β expression in a rat model of neuroinflammation

Soliman, Houdek, Rosenberger, Smith

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14 pages

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