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Jamie E Denizio

Showing results (11-20 of 20) with videos related to

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Nature Chemical Biology|December 6, 2016
Mutations along a TET2 active site scaffold stall oxidation at 5-hydroxymethylcytosineMonica Yun Liu, Hedieh Torabifard, Daniel J Crawford, et al.
Nature Biotechnology|October 9, 2018
Nondestructive, base-resolution sequencing of 5-hydroxymethylcytosine using a DNA deaminaseEmily K Schutsky, Jamie E DeNizio, Peng Hu, et al.
The Journal of Cell Biology|February 26, 2015
Both tails and the centromere targeting domain of CENP-A are required for centromere establishmentGlennis A Logsdon, Evelyne J Barrey, Emily A Bassett, et al.
Molecular Cell|December 3, 2015
PARP-1 Activation Requires Local Unfolding of an Autoinhibitory DomainJennine M Dawicki-McKenna, Marie-France Langelier, Jamie E DeNizio, et al.
Molecular Cell|December 22, 2020
Functionally distinct roles for TET-oxidized 5-methylcytosine bases in somatic reprogramming to pluripotencyBlake A Caldwell, Monica Yun Liu, Rexxi D Prasasya, et al.
Molecular Cell|August 25, 2023
Tuning Hsp104 specificity to selectively detoxify α-synucleinKorrie L Mack, Hanna Kim, Edward M Barbieri, et al.
Nature Chemical Biology|June 15, 2023
Direct enzymatic sequencing of 5-methylcytosine at single-base resolutionTong Wang, Johanna M Fowler, Laura Liu, et al.
The Journal of Clinical Investigation|August 16, 2021
BET bromodomain protein inhibition reverses chimeric antigen receptor extinction and reinvigorates exhausted T cells in chronic lymphocytic leukemiaWeimin Kong, Alexander Dimitri, Wenliang Wang, et al.
Nature|June 1, 2018
Disruption of TET2 promotes the therapeutic efficacy of CD19-targeted T cellsJoseph A Fraietta, Christopher L Nobles, Morgan A Sammons, et al.
Nature|May 20, 2021
In vivo CRISPR base editing of PCSK9 durably lowers cholesterol in primatesKiran Musunuru, Alexandra C Chadwick, Taiji Mizoguchi, et al.
Pageof 2

Showing results (11-20 of 20) with videos related to

Sort By:
Pageof 2
You have reached the last page of results.This site can display upto 20 results.
Nature Chemical Biology|December 6, 2016
Mutations along a TET2 active site scaffold stall oxidation at 5-hydroxymethylcytosineMonica Yun Liu, Hedieh Torabifard, Daniel J Crawford, et al.
Nature Biotechnology|October 9, 2018
Nondestructive, base-resolution sequencing of 5-hydroxymethylcytosine using a DNA deaminaseEmily K Schutsky, Jamie E DeNizio, Peng Hu, et al.
The Journal of Cell Biology|February 26, 2015
Both tails and the centromere targeting domain of CENP-A are required for centromere establishmentGlennis A Logsdon, Evelyne J Barrey, Emily A Bassett, et al.
Molecular Cell|December 3, 2015
PARP-1 Activation Requires Local Unfolding of an Autoinhibitory DomainJennine M Dawicki-McKenna, Marie-France Langelier, Jamie E DeNizio, et al.
Molecular Cell|December 22, 2020
Functionally distinct roles for TET-oxidized 5-methylcytosine bases in somatic reprogramming to pluripotencyBlake A Caldwell, Monica Yun Liu, Rexxi D Prasasya, et al.
Molecular Cell|August 25, 2023
Tuning Hsp104 specificity to selectively detoxify α-synucleinKorrie L Mack, Hanna Kim, Edward M Barbieri, et al.
Nature Chemical Biology|June 15, 2023
Direct enzymatic sequencing of 5-methylcytosine at single-base resolutionTong Wang, Johanna M Fowler, Laura Liu, et al.
The Journal of Clinical Investigation|August 16, 2021
BET bromodomain protein inhibition reverses chimeric antigen receptor extinction and reinvigorates exhausted T cells in chronic lymphocytic leukemiaWeimin Kong, Alexander Dimitri, Wenliang Wang, et al.
Nature|June 1, 2018
Disruption of TET2 promotes the therapeutic efficacy of CD19-targeted T cellsJoseph A Fraietta, Christopher L Nobles, Morgan A Sammons, et al.
Nature|May 20, 2021
In vivo CRISPR base editing of PCSK9 durably lowers cholesterol in primatesKiran Musunuru, Alexandra C Chadwick, Taiji Mizoguchi, et al.
Pageof 2