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Glennis A Logsdon

Showing results (1-10 of 60) with videos related to

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The Biochemical Journal|May 17, 2018
The new normal of structure/function studies in the era of CRISPR/Cas9Glennis A Logsdon, Ben E Black
Genes|January 21, 2023
The Dynamic Structure and Rapid Evolution of Human Centromeric Satellite DNAGlennis A Logsdon, Evan E Eichler
Nature Reviews. Genetics|June 7, 2020
Long-read human genome sequencing and its applicationsGlennis A Logsdon, Mitchell R Vollger, Evan E Eichler
Nucleic Acids Research|March 7, 2022
A transcriptional roadblock protects yeast centromeresSabrine Hedouin, Glennis A Logsdon, Jason G Underwood, et al.
Experimental Cell Research|April 5, 2020
The unique kind of human artificial chromosome: Bypassing the requirement for repetitive centromere DNACraig W Gambogi, Jennine M Dawicki-McKenna, Glennis A Logsdon, et al.
Bioinformatics (Oxford, England)|November 2, 2022
GAVISUNK: genome assembly validation via inter-SUNK distances in Oxford Nanopore readsPhilip C Dishuck, Allison N Rozanski, Glennis A Logsdon, et al.
Developmental Cell|January 11, 2017
CENP-A Modifications on Ser68 and Lys124 Are Dispensable for Establishment, Maintenance, and Long-Term Function of Human CentromeresDaniele Fachinetti, Glennis A Logsdon, Amira Abdullah, et al.
Plos One|April 13, 2018
TERRA and the histone methyltransferase Dot1 cooperate to regulate senescence in budding yeastJennifer J Wanat, Glennis A Logsdon, Jordan H Driskill, et al.
Biorxiv : the Preprint Server for Biology|November 22, 2024
Identification and annotation of centromeric hypomethylated regions with Centromere Dip Region (CDR)-FinderF Kumara Mastrorosa, Keisuke K Oshima, Allison N Rozanski, et al.
Bioinformatics (Oxford, England)|December 10, 2024
Identification and annotation of centromeric hypomethylated regions with CDR-FinderFrancesco Kumara Mastrorosa, Keisuke K Oshima, Allison N Rozanski, et al.
Pageof 6

Showing results (1-10 of 60) with videos related to

Sort By:
Pageof 6
The Biochemical Journal|May 17, 2018
The new normal of structure/function studies in the era of CRISPR/Cas9Glennis A Logsdon, Ben E Black
Genes|January 21, 2023
The Dynamic Structure and Rapid Evolution of Human Centromeric Satellite DNAGlennis A Logsdon, Evan E Eichler
Nature Reviews. Genetics|June 7, 2020
Long-read human genome sequencing and its applicationsGlennis A Logsdon, Mitchell R Vollger, Evan E Eichler
Nucleic Acids Research|March 7, 2022
A transcriptional roadblock protects yeast centromeresSabrine Hedouin, Glennis A Logsdon, Jason G Underwood, et al.
Experimental Cell Research|April 5, 2020
The unique kind of human artificial chromosome: Bypassing the requirement for repetitive centromere DNACraig W Gambogi, Jennine M Dawicki-McKenna, Glennis A Logsdon, et al.
Bioinformatics (Oxford, England)|November 2, 2022
GAVISUNK: genome assembly validation via inter-SUNK distances in Oxford Nanopore readsPhilip C Dishuck, Allison N Rozanski, Glennis A Logsdon, et al.
Developmental Cell|January 11, 2017
CENP-A Modifications on Ser68 and Lys124 Are Dispensable for Establishment, Maintenance, and Long-Term Function of Human CentromeresDaniele Fachinetti, Glennis A Logsdon, Amira Abdullah, et al.
Plos One|April 13, 2018
TERRA and the histone methyltransferase Dot1 cooperate to regulate senescence in budding yeastJennifer J Wanat, Glennis A Logsdon, Jordan H Driskill, et al.
Biorxiv : the Preprint Server for Biology|November 22, 2024
Identification and annotation of centromeric hypomethylated regions with Centromere Dip Region (CDR)-FinderF Kumara Mastrorosa, Keisuke K Oshima, Allison N Rozanski, et al.
Bioinformatics (Oxford, England)|December 10, 2024
Identification and annotation of centromeric hypomethylated regions with CDR-FinderFrancesco Kumara Mastrorosa, Keisuke K Oshima, Allison N Rozanski, et al.
Pageof 6