Structure and functions of powerful transactivators: VP16, MyoD and FoxA.
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Enabling functional genomics with genome engineeringSimilarities between the Epstein-Barr Virus (EBV) Nuclear Protein EBNA1 and the Pioneer Transcription Factor FoxA: Is EBNA1 a "Bookmarking" Oncoprotein that Alters the Host Cell Epigenotype?Reprogramming cells with synthetic proteinsAccelerated direct reprogramming of fibroblasts into cardiomyocyte-like cells with the MyoD transactivation domain.Efficient iPS cell production with the MyoD transactivation domain in serum-free culture.Entry of herpes simplex virus type 1 (HSV-1) into the distal axons of trigeminal neurons favors the onset of nonproductive, silent infectionInteraction of gamma-herpesvirus genome maintenance proteins with cellular chromatin.Mapping C-terminal transactivation domains of the nuclear HER family receptor tyrosine kinase HER3.Genetic dissection of photoreceptor subtype specification by the Drosophila melanogaster zinc finger proteins elbow and no ocelli.Activation of silenced cytokine gene promoters by the synergistic effect of TBP-TALE and VP64-TALE activators.Krüppel-like Factor 7 engineered for transcriptional activation promotes axon regeneration in the adult corticospinal tract.Radical acceleration of nuclear reprogramming by chromatin remodeling with the transactivation domain of MyoD.The Epstein-Barr virus nuclear antigen-1 reprograms transcription by mimicry of high mobility group A proteinsInhibitory effect of MyoD on the proliferation of breast cancer cells.Hyperactivated Stat3 boosts axon regeneration in the CNS.The dynamics of HCF-1 modulation of herpes simplex virus chromatin during initiation of infection.Discovery and progress of direct cardiac reprogramming.Improved retroviral episome transfer of transcription factors enables sustained cell fate modification.Regulation of cancer epigenomes with a histone-binding synthetic transcription factor.Genetically modifying transcription factors to promote CNS axon regeneration.Synthetic TAL effectors for targeted enhancement of transgene expression in plants.Functional domains of the FSHD-associated DUX4 protein.Direct Cardiac Reprogramming: A Novel Approach for Heart Regeneration
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Structure and functions of powerful transactivators: VP16, MyoD and FoxA.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on January 2010
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Structure and functions of powerful transactivators: VP16, MyoD and FoxA.
@en
Structure and functions of powerful transactivators: VP16, MyoD and FoxA.
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type
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Structure and functions of powerful transactivators: VP16, MyoD and FoxA.
@en
Structure and functions of powerful transactivators: VP16, MyoD and FoxA.
@nl
prefLabel
Structure and functions of powerful transactivators: VP16, MyoD and FoxA.
@en
Structure and functions of powerful transactivators: VP16, MyoD and FoxA.
@nl
P2860
P356
P1476
Structure and functions of powerful transactivators: VP16, MyoD and FoxA.
@en
P2093
Nobuaki Kikyo
Tetsuya Tani
P2860
P304
P356
10.1387/IJDB.103194HH
P577
2010-01-01T00:00:00Z