RNA polymerase II primes Polycomb-repressed developmental genes throughout terminal neuronal differentiation

10.15252/msb.20177754

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Main Authors: Ferrai, C, Torlai Triglia, E, Risner-Janiczek, J.R, Rito, T, Rackham, O.J.L, de Santiago, I, Kukalev, A, Nicodemi, M, Akalin, A, Li, M, Ungless, M.A, Pombo, A
Other Authors: DUKE-NUS MEDICAL SCHOOL
Format: Article
Published: 2020
Subjects:
DNA
Online Access:https://scholarbank.nus.edu.sg/handle/10635/179455
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spelling sg-nus-scholar.10635-1794552020-10-23T13:43:24Z RNA polymerase II primes Polycomb-repressed developmental genes throughout terminal neuronal differentiation Ferrai, C Torlai Triglia, E Risner-Janiczek, J.R Rito, T Rackham, O.J.L de Santiago, I Kukalev, A Nicodemi, M Akalin, A Li, M Ungless, M.A Pombo, A DUKE-NUS MEDICAL SCHOOL DNA hepatocyte nuclear factor 3beta neurogenin 2 octamer transcription factor 4 polycomb repressive complex 2 RNA polymerase II semaphorin 3F transcription factor Mash1 polycomb group protein RNA polymerase II transcription factor Article cell maturation chromatin developmental gene DNA methylation DNA replication dopaminergic nerve cell electrophysiology frontal cortex human inhibition kinetics mesencephalon molecular dynamics nerve cell culture nerve cell differentiation nerve cell plasticity nonhuman phenotype pluripotent stem cell priority journal promoter region protein expression animal cell differentiation cytology genetics metabolism mouse mouse embryonic stem cell sequence analysis Animals Cell Differentiation Dopaminergic Neurons Genes, Developmental Mice Mouse Embryonic Stem Cells Polycomb-Group Proteins Promoter Regions, Genetic RNA Polymerase II Sequence Analysis, RNA Transcription Factors 10.15252/msb.20177754 Molecular Systems Biology 13 10 946 2020-10-23T04:39:11Z 2020-10-23T04:39:11Z 2017 Article Ferrai, C, Torlai Triglia, E, Risner-Janiczek, J.R, Rito, T, Rackham, O.J.L, de Santiago, I, Kukalev, A, Nicodemi, M, Akalin, A, Li, M, Ungless, M.A, Pombo, A (2017). RNA polymerase II primes Polycomb-repressed developmental genes throughout terminal neuronal differentiation. Molecular Systems Biology 13 (10) : 946. ScholarBank@NUS Repository. https://doi.org/10.15252/msb.20177754 17444292 https://scholarbank.nus.edu.sg/handle/10635/179455 Attribution 4.0 International http://creativecommons.org/licenses/by/4.0/ Unpaywall 20201031
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic DNA
hepatocyte nuclear factor 3beta
neurogenin 2
octamer transcription factor 4
polycomb repressive complex 2
RNA polymerase II
semaphorin 3F
transcription factor Mash1
polycomb group protein
RNA polymerase II
transcription factor
Article
cell maturation
chromatin
developmental gene
DNA methylation
DNA replication
dopaminergic nerve cell
electrophysiology
frontal cortex
human
inhibition kinetics
mesencephalon
molecular dynamics
nerve cell culture
nerve cell differentiation
nerve cell plasticity
nonhuman
phenotype
pluripotent stem cell
priority journal
promoter region
protein expression
animal
cell differentiation
cytology
genetics
metabolism
mouse
mouse embryonic stem cell
sequence analysis
Animals
Cell Differentiation
Dopaminergic Neurons
Genes, Developmental
Mice
Mouse Embryonic Stem Cells
Polycomb-Group Proteins
Promoter Regions, Genetic
RNA Polymerase II
Sequence Analysis, RNA
Transcription Factors
spellingShingle DNA
hepatocyte nuclear factor 3beta
neurogenin 2
octamer transcription factor 4
polycomb repressive complex 2
RNA polymerase II
semaphorin 3F
transcription factor Mash1
polycomb group protein
RNA polymerase II
transcription factor
Article
cell maturation
chromatin
developmental gene
DNA methylation
DNA replication
dopaminergic nerve cell
electrophysiology
frontal cortex
human
inhibition kinetics
mesencephalon
molecular dynamics
nerve cell culture
nerve cell differentiation
nerve cell plasticity
nonhuman
phenotype
pluripotent stem cell
priority journal
promoter region
protein expression
animal
cell differentiation
cytology
genetics
metabolism
mouse
mouse embryonic stem cell
sequence analysis
Animals
Cell Differentiation
Dopaminergic Neurons
Genes, Developmental
Mice
Mouse Embryonic Stem Cells
Polycomb-Group Proteins
Promoter Regions, Genetic
RNA Polymerase II
Sequence Analysis, RNA
Transcription Factors
Ferrai, C
Torlai Triglia, E
Risner-Janiczek, J.R
Rito, T
Rackham, O.J.L
de Santiago, I
Kukalev, A
Nicodemi, M
Akalin, A
Li, M
Ungless, M.A
Pombo, A
RNA polymerase II primes Polycomb-repressed developmental genes throughout terminal neuronal differentiation
description 10.15252/msb.20177754
author2 DUKE-NUS MEDICAL SCHOOL
author_facet DUKE-NUS MEDICAL SCHOOL
Ferrai, C
Torlai Triglia, E
Risner-Janiczek, J.R
Rito, T
Rackham, O.J.L
de Santiago, I
Kukalev, A
Nicodemi, M
Akalin, A
Li, M
Ungless, M.A
Pombo, A
format Article
author Ferrai, C
Torlai Triglia, E
Risner-Janiczek, J.R
Rito, T
Rackham, O.J.L
de Santiago, I
Kukalev, A
Nicodemi, M
Akalin, A
Li, M
Ungless, M.A
Pombo, A
author_sort Ferrai, C
title RNA polymerase II primes Polycomb-repressed developmental genes throughout terminal neuronal differentiation
title_short RNA polymerase II primes Polycomb-repressed developmental genes throughout terminal neuronal differentiation
title_full RNA polymerase II primes Polycomb-repressed developmental genes throughout terminal neuronal differentiation
title_fullStr RNA polymerase II primes Polycomb-repressed developmental genes throughout terminal neuronal differentiation
title_full_unstemmed RNA polymerase II primes Polycomb-repressed developmental genes throughout terminal neuronal differentiation
title_sort rna polymerase ii primes polycomb-repressed developmental genes throughout terminal neuronal differentiation
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/179455
_version_ 1681696546648752128