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Steven Henikoff

Showing results (211-220 of 289) with videos related to

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Nature Communications|December 17, 2015
Corrigendum: ChEC-seq kinetics discriminates transcription factor binding sites by DNA sequence and shape in vivoGabriel E Zentner, Sivakanthan Kasinathan, Beibei Xin, et al.
Elife|November 16, 2020
Efficient chromatin accessibility mapping in situ by nucleosome-tethered tagmentationSteven Henikoff, Jorja G Henikoff, Hatice S Kaya-Okur, et al.
Biorxiv : the Preprint Server for Biology|November 24, 2025
Nascent CUT&Tag captures transcription factor binding after chromatin duplicationMatthew Wooten, Kevin Nguyen, Brittany N Takushi, et al.
Biorxiv : the Preprint Server for Biology|November 28, 2023
Expansion of human centromeric arrays in cells undergoing break-induced replicationSoyeon Showman, Paul B Talbert, Yiling Xu, et al.
Nature Methods|December 17, 2013
High-resolution mapping of transcription factor binding sites on native chromatinSivakanthan Kasinathan, Guillermo A Orsi, Gabriel E Zentner, et al.
Current Protocols in Bioinformatics|September 17, 2008
Using the blocks database to recognize functional domainsJorja G Henikoff, Elizabeth A Greene, Nick Taylor, et al.
Current Protocols in Molecular Biology|April 2, 2015
Mapping regulatory factors by immunoprecipitation from native chromatinGuillermo A Orsi, Sivakanthan Kasinathan, Gabriel E Zentner, et al.
Cell Reports|March 1, 2024
Expansion of human centromeric arrays in cells undergoing break-induced replicationSoyeon Showman, Paul B Talbert, Yiling Xu, et al.
Genome Research|December 18, 2008
Genome-wide profiling of salt fractions maps physical properties of chromatinSteven Henikoff, Jorja G Henikoff, Akiko Sakai, et al.
The Plant Cell|May 30, 2002
Centromeric localization and adaptive evolution of an Arabidopsis histone H3 variantPaul B Talbert, Ricardo Masuelli, Anand P Tyagi, et al.
Pageof 29

Showing results (211-220 of 289) with videos related to

Sort By:
Pageof 29
Nature Communications|December 17, 2015
Corrigendum: ChEC-seq kinetics discriminates transcription factor binding sites by DNA sequence and shape in vivoGabriel E Zentner, Sivakanthan Kasinathan, Beibei Xin, et al.
Elife|November 16, 2020
Efficient chromatin accessibility mapping in situ by nucleosome-tethered tagmentationSteven Henikoff, Jorja G Henikoff, Hatice S Kaya-Okur, et al.
Biorxiv : the Preprint Server for Biology|November 24, 2025
Nascent CUT&Tag captures transcription factor binding after chromatin duplicationMatthew Wooten, Kevin Nguyen, Brittany N Takushi, et al.
Biorxiv : the Preprint Server for Biology|November 28, 2023
Expansion of human centromeric arrays in cells undergoing break-induced replicationSoyeon Showman, Paul B Talbert, Yiling Xu, et al.
Nature Methods|December 17, 2013
High-resolution mapping of transcription factor binding sites on native chromatinSivakanthan Kasinathan, Guillermo A Orsi, Gabriel E Zentner, et al.
Current Protocols in Bioinformatics|September 17, 2008
Using the blocks database to recognize functional domainsJorja G Henikoff, Elizabeth A Greene, Nick Taylor, et al.
Current Protocols in Molecular Biology|April 2, 2015
Mapping regulatory factors by immunoprecipitation from native chromatinGuillermo A Orsi, Sivakanthan Kasinathan, Gabriel E Zentner, et al.
Cell Reports|March 1, 2024
Expansion of human centromeric arrays in cells undergoing break-induced replicationSoyeon Showman, Paul B Talbert, Yiling Xu, et al.
Genome Research|December 18, 2008
Genome-wide profiling of salt fractions maps physical properties of chromatinSteven Henikoff, Jorja G Henikoff, Akiko Sakai, et al.
The Plant Cell|May 30, 2002
Centromeric localization and adaptive evolution of an Arabidopsis histone H3 variantPaul B Talbert, Ricardo Masuelli, Anand P Tyagi, et al.
Pageof 29