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Paper Details

The HIV-1 Tat protein recruits a ubiquitin ligase to reorganize the 7SK snRNP for transcriptional activation.
Elife
29
2018
7SK, 7SK complex, 7SK snRNP, CDK9, HEXIM1, HIV, HIV-1, HIV-1 Tat protein, HIV-1 promoter, P-, P-TEFb, P-TEFb kinase, RNA polymerase II, RNAP II, TEFb, Tat, UBE2O, chromatin, cytoplasm, cytoplasmic 7SK snRNP, cytoplasmic ubiquitin ligase, ubiquitin ligase, viral promoter
Active Transport, Cell Nucleus, Amino Acid Sequence, Cell Nucleus, Chromatin, Dichlororibofuranosylbenzimidazole, HEK293 Cells, HIV-1, HeLa Cells, Humans, Models, Biological, Nuclear Localization Signals, Positive Transcriptional Elongation Factor B, Protein Binding, Protein Transport, RNA Interference, RNA-Binding Proteins, Ribonucleoproteins, Small Nuclear, Transcription Factors, Transcriptional Activation, Ubiquitin-Conjugating Enzymes, Ubiquitination, tat Gene Products, Human Immunodeficiency Virus
Author NameAffiliation
Tyler B FaustUniversity of California san francisco
Yang LiUniversity of California san francisco
Curtis W BaconUniversity of Texas Southwestern Medical Center
Gwendolyn M JangUniversity of California san francisco
Gwendolyn M JangJ David Gladstone Institutes
Amit WeissUniversity of California san francisco
Bhargavi JayaramanUniversity of California san francisco
Billy W NewtonUniversity of California san francisco
Billy W NewtonJ David Gladstone Institutes
Nevan J Krogan (CM4AI)University of California san francisco
Nevan J Krogan (CM4AI)J David Gladstone Institutes
Iv??n D'OrsoUniversity of Texas Southwestern Medical Center
Alan D FrankelUniversity of California san francisco
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