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Paul A C Cloos

Showing results (1-10 of 18) with videos related to

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Matrix Biology : Journal of the International Society for Matrix Biology|February 6, 2002
Non-enzymatic covalent modifications of proteins: mechanisms, physiological consequences and clinical applicationsPaul A C Cloos, Stephan Christgau
Clinical Laboratory|October 16, 2004
Characterization of aged osteocalcin fragments derived from bone resorptionPaul A C Cloos, Stephan Christgau
Biogerontology|June 11, 2004
Post-translational modifications of proteins: implications for aging, antigen recognition, and autoimmunityPaul A C Cloos, Stephan Christgau
Genes & Development|May 3, 2008
Erasing the methyl mark: histone demethylases at the center of cellular differentiation and diseasePaul A C Cloos, Jesper Christensen, Karl Agger, et al.
Current Opinion in Genetics & Development|February 19, 2008
The emerging functions of histone demethylasesKarl Agger, Jesper Christensen, Paul A C Cloos, et al.
Genes & Development|May 17, 2008
Coordinated regulation of transcriptional repression by the RBP2 H3K4 demethylase and Polycomb-Repressive Complex 2Diego Pasini, Klaus H Hansen, Jesper Christensen, et al.
Clinical Laboratory|June 24, 2004
An immunoassay for measuring fragments of newly synthesized collagen type I produced during metastatic invasion of bonePaul A C Cloos, Nina Lyubimova, Helene Solberg, et al.
Genes & Development|May 20, 2009
The H3K27me3 demethylase JMJD3 contributes to the activation of the INK4A-ARF locus in response to oncogene- and stress-induced senescenceKarl Agger, Paul A C Cloos, Lise Rudkjaer, et al.
Nature|April 15, 2011
TET1 and hydroxymethylcytosine in transcription and DNA methylation fidelityKristine Williams, Jesper Christensen, Marianne Terndrup Pedersen, et al.
Molecular and Cellular Biology|January 8, 2014
The demethylase JMJD2C localizes to H3K4me3-positive transcription start sites and is dispensable for embryonic developmentMarianne Terndrup Pedersen, Karl Agger, Anne Laugesen, et al.
Pageof 2

Showing results (1-10 of 18) with videos related to

Sort By:
Pageof 2
Matrix Biology : Journal of the International Society for Matrix Biology|February 6, 2002
Non-enzymatic covalent modifications of proteins: mechanisms, physiological consequences and clinical applicationsPaul A C Cloos, Stephan Christgau
Clinical Laboratory|October 16, 2004
Characterization of aged osteocalcin fragments derived from bone resorptionPaul A C Cloos, Stephan Christgau
Biogerontology|June 11, 2004
Post-translational modifications of proteins: implications for aging, antigen recognition, and autoimmunityPaul A C Cloos, Stephan Christgau
Genes & Development|May 3, 2008
Erasing the methyl mark: histone demethylases at the center of cellular differentiation and diseasePaul A C Cloos, Jesper Christensen, Karl Agger, et al.
Current Opinion in Genetics & Development|February 19, 2008
The emerging functions of histone demethylasesKarl Agger, Jesper Christensen, Paul A C Cloos, et al.
Genes & Development|May 17, 2008
Coordinated regulation of transcriptional repression by the RBP2 H3K4 demethylase and Polycomb-Repressive Complex 2Diego Pasini, Klaus H Hansen, Jesper Christensen, et al.
Clinical Laboratory|June 24, 2004
An immunoassay for measuring fragments of newly synthesized collagen type I produced during metastatic invasion of bonePaul A C Cloos, Nina Lyubimova, Helene Solberg, et al.
Genes & Development|May 20, 2009
The H3K27me3 demethylase JMJD3 contributes to the activation of the INK4A-ARF locus in response to oncogene- and stress-induced senescenceKarl Agger, Paul A C Cloos, Lise Rudkjaer, et al.
Nature|April 15, 2011
TET1 and hydroxymethylcytosine in transcription and DNA methylation fidelityKristine Williams, Jesper Christensen, Marianne Terndrup Pedersen, et al.
Molecular and Cellular Biology|January 8, 2014
The demethylase JMJD2C localizes to H3K4me3-positive transcription start sites and is dispensable for embryonic developmentMarianne Terndrup Pedersen, Karl Agger, Anne Laugesen, et al.
Pageof 2