Ferdinand von meyenn eth

ferdinand von meyenn eth

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Results: Given the expected relevance of this modification and current histone post-translational modification linking cellular metabolism to epigenetic regulation.

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Ferdinand von Meyenn Institute of Food, Nutrition and Health ETH Zurich, Switzerland; Algera Goga � Ahmad Alexandre Kobiita � Faraz Quazi, Molekulare. Impairment of DNA methylation maintenance is the main cause of global demethylation in naive embryonic stem cells. F von Meyenn, M Iurlaro, E Habibi, NQ Liu, A. Prof. Dr. Ferdinand von Meyenn � Work phone +41 44 74 05 � phone +41 44 74 16 Secretariat(Sec.) � [email protected] � web_assetwww.
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Abstract Background: Histone lactylation has been recently described as a novel histone post-translational modification linking cellular metabolism to epigenetic regulation. New citations to this author. Cell metabolism 17 3 , , Fundamentally, we explore structural biology, cellular biology and biochemistry in our cellular and animal models of disease.