#acetylation

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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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Simulations moléculaires appliquées à l acétylation de flavonoïdes catalysée par des lipases : influence des structures de la lipase et du flavonoïde et sur la régiosélectivité de la bioconversion, Molecular simulations applied to the llipase-catalyzed acetylation of flavonoids : influence of the lipase and flavonoid structures on the bioconversion regioselectivity
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Simulations moléculaires appliquées à l'acétylation de flavonoïdes catalysée par des lipases : influence des structures de la lipase et du flavonoïde et sur la régiosélectivité de la bioconversion, Molecular simulations applied to the llipase-catalyzed acetylation of flavonoids : influence of the lipase and flavonoid structures on the bioconversion regioselectivity

Eduardo Basilio De Oliveira

Simulations moléculaires appliquées à l acétylation de flavonoïdes catalysée par des lipases : influence des structures de la lipase et du flavonoïde et sur la régiosélectivité de la bioconversion, Molecular simulations applied to the llipase-catalyzed acetylation of flavonoids : influence of the lipase and flavonoid structures on the bioconversion regioselectivity Alternate Text
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Savoirs

Simulations moléculaires appliquées à l'acétylation de flavonoïdes catalysée par des lipases : influence des structures de la lipase et du flavonoïde et sur la régiosélectivité de la bioconversion, Molecular simulations applied to the llipase-catalyzed acetylation of flavonoids : influence of the lipase and flavonoid structures on the bioconversion regioselectivity

Eduardo Basilio De Oliveira

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206 pages

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H2A.Z landscapes and dual modifications in pluripotent and multipotent stem cells underlie complex genome regulatory functions
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H2A.Z landscapes and dual modifications in pluripotent and multipotent stem cells underlie complex genome regulatory functions

Ku Manching, Jaffe, Koche, Rheinbay Esther, Endoh Mitsuhiro, Koseki Haruhiko, Bernstein, Carr

H2A.Z landscapes and dual modifications in pluripotent and multipotent stem cells underlie complex genome regulatory functions Alternate Text
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Savoirs

H2A.Z landscapes and dual modifications in pluripotent and multipotent stem cells underlie complex genome regulatory functions

Ku Manching, Jaffe, Koche, Rheinbay Esther, Endoh Mitsuhiro, Koseki Haruhiko, Bernstein, Carr

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13 pages

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English

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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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Savoirs

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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