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Paper Details

Compartmentalization of HP1 Proteins in Pluripotency Acquisition and Maintenance.
Stem Cell Reports
19
2018
DPPA4, DPY30, ESCs, H3K9, H3K9 methylation depleted H3K9M embryonic stem cell (ESC) lines, H3K9M, HP1, HP1 Proteins, HP1 complexes, HP1 proteins, OCT4, SENP7, chromatin, elongation-associated histone H3, heterochromatin anchoring protein, heterochromatin protein 1, histone chaperone CAF1 complex, histones, induced, induced pluripotent stem cells, pluripotency, pluripotent stem cells
Animals, Cellular Reprogramming, Chromatin, Chromobox Protein Homolog 5, Chromosomal Proteins, Non-Histone, Endopeptidases, Exoribonucleases, Histone-Lysine N-Methyltransferase, Histones, Humans, Induced Pluripotent Stem Cells, Mice, Mice, Knockout, Multiprotein Complexes, Nuclear Proteins, Octamer Transcription Factor-3, Proteins, Repressor Proteins, Ribonucleases, Transcription Factors
Author NameAffiliation
Nur Zafirah ZaidanWisconsin Institute for Discovery, University of Wisconsin-Madison
Kolin J WalkerWisconsin Institute for Discovery, University of Wisconsin-Madison
Jaime E BrownWisconsin Institute for Discovery, University of Wisconsin-Madison
Leah V Schaffer (CM4AI)University of Wisconsin-Madison
Mark ScalfUniversity of Wisconsin-Madison
Michael R ShortreedUniversity of Wisconsin-Madison
Gopal IyerUniversity of Wisconsin-Madison
Lloyd M SmithUniversity of Wisconsin-Madison
Rupa SridharanWisconsin Institute for Discovery, University of Wisconsin-Madison
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