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Jeffrey N McKnight

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

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Genomics Data|December 24, 2015
The conserved HDAC Rpd3 drives transcriptional quiescence in S. cerevisiaeJeffrey N McKnight, Toshio Tsukiyama
Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology|November 19, 2016
Sequence-specific targeting of chromatin remodelers organizes precisely positioned nucleosomes throughout the genomeGregory D Bowman, Jeffrey N McKnight
Current Protocols in Molecular Biology|October 2, 2014
Genome-Wide Analysis of Nucleosome Positions, Occupancy, and Accessibility in Yeast: Nucleosome Mapping, High-Resolution Histone ChIP, and NCAMJairo Rodriguez, Jeffrey N McKnight, Toshio Tsukiyama
Genome Research|March 20, 2016
Sequence-targeted nucleosome sliding in vivo by a hybrid Chd1 chromatin remodelerJeffrey N McKnight, Toshio Tsukiyama, Gregory D Bowman
The Journal of Biological Chemistry|November 1, 2011
Identification of residues in chromodomain helicase DNA-binding protein 1 (Chd1) required for coupling ATP hydrolysis to nucleosome slidingAshok Patel, Jeffrey N McKnight, Pavol Genzor, et al.
Molecular Cell|August 25, 2015
Global Promoter Targeting of a Conserved Lysine Deacetylase for Transcriptional Shutoff during Quiescence EntryJeffrey N McKnight, Joseph W Boerma, Linda L Breeden, et al.
Molecular Cell|September 14, 2010
The chromodomains of the Chd1 chromatin remodeler regulate DNA access to the ATPase motorGlenn Hauk, Jeffrey N McKnight, Ilana M Nodelman, et al.
Biorxiv : the Preprint Server for Biology|July 18, 2023
Simultaneous Mapping of DNA Binding and Nucleosome Positioning with SpLiT-ChECOrion G B Banks, Michael J Harms, Jeffrey N McKnight, et al.
Molecular and Cellular Biology|October 5, 2011
Extranucleosomal DNA binding directs nucleosome sliding by Chd1Jeffrey N McKnight, Katherine R Jenkins, Ilana M Nodelman, et al.
Plos Genetics|December 21, 2022
Tup1 is critical for transcriptional repression in Quiescence in S. cerevisiaeThomas B Bailey, Phaedra A Whitty, Eric U Selker, et al.
Pageof 2

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

Sort By:
Pageof 2
Genomics Data|December 24, 2015
The conserved HDAC Rpd3 drives transcriptional quiescence in S. cerevisiaeJeffrey N McKnight, Toshio Tsukiyama
Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology|November 19, 2016
Sequence-specific targeting of chromatin remodelers organizes precisely positioned nucleosomes throughout the genomeGregory D Bowman, Jeffrey N McKnight
Current Protocols in Molecular Biology|October 2, 2014
Genome-Wide Analysis of Nucleosome Positions, Occupancy, and Accessibility in Yeast: Nucleosome Mapping, High-Resolution Histone ChIP, and NCAMJairo Rodriguez, Jeffrey N McKnight, Toshio Tsukiyama
Genome Research|March 20, 2016
Sequence-targeted nucleosome sliding in vivo by a hybrid Chd1 chromatin remodelerJeffrey N McKnight, Toshio Tsukiyama, Gregory D Bowman
The Journal of Biological Chemistry|November 1, 2011
Identification of residues in chromodomain helicase DNA-binding protein 1 (Chd1) required for coupling ATP hydrolysis to nucleosome slidingAshok Patel, Jeffrey N McKnight, Pavol Genzor, et al.
Molecular Cell|August 25, 2015
Global Promoter Targeting of a Conserved Lysine Deacetylase for Transcriptional Shutoff during Quiescence EntryJeffrey N McKnight, Joseph W Boerma, Linda L Breeden, et al.
Molecular Cell|September 14, 2010
The chromodomains of the Chd1 chromatin remodeler regulate DNA access to the ATPase motorGlenn Hauk, Jeffrey N McKnight, Ilana M Nodelman, et al.
Biorxiv : the Preprint Server for Biology|July 18, 2023
Simultaneous Mapping of DNA Binding and Nucleosome Positioning with SpLiT-ChECOrion G B Banks, Michael J Harms, Jeffrey N McKnight, et al.
Molecular and Cellular Biology|October 5, 2011
Extranucleosomal DNA binding directs nucleosome sliding by Chd1Jeffrey N McKnight, Katherine R Jenkins, Ilana M Nodelman, et al.
Plos Genetics|December 21, 2022
Tup1 is critical for transcriptional repression in Quiescence in S. cerevisiaeThomas B Bailey, Phaedra A Whitty, Eric U Selker, et al.
Pageof 2