[HTML][HTML] A method for genetically installing site-specific acetylation in recombinant histones defines the effects of H3 K56 acetylation

H Neumann, SM Hancock, R Buning, A Routh… - Molecular cell, 2009 - cell.com
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells
and orchestrates DNA replication, chromosome condensation, transcription, telomeric …

A method for genetically installing site-specific acetylation in recombinant histories defines the effects of H3 K56 acetylation

H Neumann, SM Hancock, R Buning… - Molecular …, 2009 - discovery.dundee.ac.uk
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells
and orchestrates DNA replication, chromosome condensation, transcription, telomeric …

[PDF][PDF] A Method for Genetically Installing Site-Specific Acetylation in Recombinant Histones Defines the Effects of H3 K56 Acetylation

H Neumann, SM Hancock, R Buning, A Routh… - 2009 - researchgate.net
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells
and orchestrates DNA replication, chromosome condensation, transcription, telomeric …

A Method for Genetically Installing Site-Specific Acetylation in Recombinant Histones Defines the Effects of H3 K56 Acetylation

H Neumann, SM Hancock, R Buning… - Molecular …, 2009 - researchexperts.utmb.edu
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells
and orchestrates DNA replication, chromosome condensation, transcription, telomeric …

[PDF][PDF] A method for genetically installing site-specific acetylation in recombinant histones defines the effects of H3 K56 acetylation

H Neumann, SM Hancock, R Buning, A Routh… - scholarlypublications …
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells,
and orchestrates DNA replication, chromosome condensation, transcription, telomeric …

A method for genetically installing site-specific acetylation in recombinant histones defines the effects of H3 K56 acetylation

H Neumann, SM Hancock, R Buning… - Molecular …, 2009 - pubmed.ncbi.nlm.nih.gov
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells
and orchestrates DNA replication, chromosome condensation, transcription, telomeric …

[HTML][HTML] A Method for Genetically Installing Site-Specific Acetylation in Recombinant Histones Defines the Effects of H3 K56 Acetylation

H Neumann, SM Hancock, R Buning, A Routh… - Molecular …, 2009 - ncbi.nlm.nih.gov
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells
and orchestrates DNA replication, chromosome condensation, transcription, telomeric …

[引用][C] A Method for Genetically Installing Site-Specific Acetylation in Recombinant Histones Defines the Effects of H3 K56 Acetylation

H Neumann, SM Hancock, R Buning, A Routh… - Molecular Cell, 2009 - cir.nii.ac.jp
A Method for Genetically Installing Site-Specific Acetylation in Recombinant Histones
Defines the Effects of H3 K56 Acetylation | CiNii Research CiNii 国立情報学研究所 学術情報 …

A Method for Genetically Installing Site-Specific Acetylation in Recombinant Histones Defines the Effects of H3 K56 Acetylation

H Neumann, SM Hancock, R Buning, A Routh… - Molecular Cell, 2009 - infona.pl
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells
and orchestrates DNA replication, chromosome condensation, transcription, telomeric …

[PDF][PDF] A Method for Genetically Installing Site-Specific Acetylation in Recombinant Histones Defines the Effects of H3 K56 Acetylation

H Neumann, SM Hancock, R Buning, A Routh… - Molecular …, 2009 - cyberleninka.org
Lysine acetylation of histones defines the epigenetic status of human embryonic stem cells
and orchestrates DNA replication, chromosome condensation, transcription, telomeric …