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Roles of the E6 and E7 Proteins in the Life Cycle of Low-Risk Human Papillomavirus Type 11

Data up to Jan 2025

Published2004
Citations109
References56

Total Citations Per Year

Abstract

References (56)

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Degradation of p53 can be targeted by HPV E6 sequences distinct from those required for p53 binding and trans-activation

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HUMAN PAPILLOMAVIRUSES

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Efficiency of binding the retinoblastoma protein correlates with the transforming capacity of the E7 oncoproteins of the human papillomaviruses.

1992 • 327 citations

The Human Papillomavirus Type 16 E6 Oncoprotein Can Down-Regulate p53 Activity by Targeting the Transcriptional Coactivator CBP/p300

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Oncogenic human papillomavirus E6 proteins target the discs large tumour suppressor for proteasome-mediated degradation

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Oncogenic and nononcogenic human genital papillomaviruses generate the E7 mRNA by different mechanisms

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Multi-PDZ Domain Protein MUPP1 Is a Cellular Target for both Adenovirus E4-ORF1 and High-Risk Papillomavirus Type 18 E6 Oncoproteins

2000 • 259 citations

Identification of a human ubiquitin-conjugating enzyme that mediates the E6-AP-dependent ubiquitination of p53.

1994 • 259 citations

The bovine papillomavirus E6 oncoprotein interacts with paxillin and disrupts the actin cytoskeleton

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Telomerase Activation by Human Papillomavirus Type 16 E6 Protein: Induction of Human Telomerase Reverse Transcriptase Expression through Myc and GC-Rich Sp1 Binding Sites

2001 • 234 citations

The Human Papillomavirus Type 16 E7 Oncogene Is Required for the Productive Stage of the Viral Life Cycle

2000 • 226 citations

Human papillomavirus (HPV) E6 interactions with Bak are conserved amongst E6 proteins from high and low risk HPV types.

1999 • 209 citations

In vitro synthesis of oncogenic human papillomaviruses requires episomal genomes for differentiation-dependent late expression.

1996 • 198 citations

Multiple Functions of Human Papillomavirus Type 16 E6 Contribute to the Immortalization of Mammary Epithelial Cells

1999 • 198 citations

Human papillomavirus type 31 oncoproteins E6 and E7 are required for the maintenance of episomes during the viral life cycle in normal human keratinocytes

1999 • 198 citations

Viral Oncoproteins Discriminate between p53 and the p53 Homolog p73

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Human Papillomavirus Type 31 E5 Protein Supports Cell Cycle Progression and Activates Late Viral Functions upon Epithelial Differentiation

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Cloning and Expression of the cDNA for E6-AP, a Protein that Mediates the Interaction of the Human Papillomavirus E6 Oncoprotein with p53

1993 • 190 citations

High-risk human papillomavirus E6 protein has two distinct binding sites within p53, of which only one determines degradation

1996 • 189 citations

E Box-Dependent Activation of Telomerase by Human Papillomavirus Type 16 E6 Does Not Require Induction of c- myc

2001 • 187 citations

E3-Ubiquitin Ligase/E6-AP Links Multicopy Maintenance Protein 7 to the Ubiquitination Pathway by a Novel Motif, the L2G Box

1998 • 180 citations

Association of Bovine Papillomavirus Type 1 E6 oncoprotein with the focal adhesion protein paxillin through a conserved protein interaction motif

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The Bovine Papillomavirus E6 Protein Binds to the LD Motif Repeats of Paxillin and Blocks Its Interaction with Vinculin and the Focal Adhesion Kinase

1997 • 91 citations

Mutational analysis of human papillomavirus type 16 E6 demonstrates that p53 degradation is necessary for immortalization of mammary epithelial cells

1996 • 88 citations

Genetic Analysis of High-Risk E6 in Episomal Maintenance of Human Papillomavirus Genomes in Primary Human Keratinocytes

2002 • 84 citations

Human Papillomavirus Oncoprotein E6 Binds to the C-Terminal Region of Human Minichromosome Maintenance 7 Protein

1998 • 80 citations

Functional inactivation of p73, a homolog of p53 tumor suppressor protein, by human papillomavirus E6 proteins

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Human papillomavirus type 31b late gene expression is regulated through protein kinase C-mediated changes in RNA processing

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Mechanism of HPV E6 proteins in cellular transformation

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Human Papillomavirus Type 31 Replication Modes during the Early Phases of the Viral Life Cycle Depend on Transcriptional and Posttranscriptional Regulation of E1 and E2 Expression

2002 • 62 citations

Interaction of Zyxin, a Focal Adhesion Protein, with the E6 Protein from Human Papillomavirus Type 6 Results in Its Nuclear Translocation

2001 • 60 citations

Cellular Changes Induced by Low-Risk Human Papillomavirus Type 11 in Keratinocytes That Stably Maintain Viral Episomes

2001 • 59 citations

Gps2, a Protein Partner for Human Papillomavirus E6 Proteins

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Role of E6 and E7 oncoproteins in HPV-induced anogenital malignancies

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Differential regulation of human papillomavirus type 6 and 11 early promoters in cultured cells derived from laryngeal papillomas

1995 • 41 citations

The interaction between p53 and papillomaviruses

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Mutational analysis of the discs large tumour suppressor identifies domains responsible for human papillomavirus type 18 E6-mediated degradation

2002 • 34 citations

Heterogeneity of papillomaviruses

1996 • 30 citations

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Roles of the E6 and E7 Proteins in the Life Cycle of Low-Risk Human Papillomavirus Type 11 (2004) – Journal of Virology | Metascience Observatory Explorer