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Publications by Kerry David Farris
Protein Processing Strategies by Adeno-Associated Virus Type 5 (AAV5) and the Effects of the Adenovirus E4orf6/E1b-55k/Cullin 5 E3 Ubiquitin Ligase Complex on AAV Protein Stability
Related publications
E4Orf6-E1b-55k-Dependent Degradation of De Novo-Generated Adeno-Associated Virus Type 5 Rep52 and Capsid Proteins Employs a Cullin 5-Containing E3 Ligase Complex
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The Transcription Strategy of Bovine Adeno-Associated Virus (B-Aav) Combines Features of Both Adeno-Associated Virus Type 2 (AAV2) and Type 5 (AAV5)
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The Adenovirus Type 5 E1b-55k Oncoprotein Actively Shuttles in Virus-Infected Cells, Whereas Transport of E4orf6 Is Mediated by a CRM1-Independent Mechanism
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Two Distinct Activities Contribute to the Oncogenic Potential of the Adenovirus Type 5 E4orf6 Protein
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Stability of the HTLV-1 Antisense-Derived Protein, HBZ, Is Regulated by the E3 Ubiquitin-Protein Ligase, UBR5
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The Nuclear Export Signal Within the E4orf6 Protein of Adenovirus Type 5 Supports Virus Replication and Cytoplasmic Accumulation of Viral mRNA
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Regulation of P53 Levels by the E1B 55-Kilodalton Protein and E4orf6 in Adenovirus-Infected Cells.
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Identification of Three Functions of the Adenovirus E4orf6 Protein That Mediate P53 Degradation by the E4orf6-E1b55k Complex
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Adeno-Associated Virus Type 5 (AAV5) but Not AAV2 Binds to the Apical Surfaces of Airway Epithelia and Facilitates Gene Transfer
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