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Regulation of E2F through ubiquitin–proteasome-dependent degradation: Stabilization by the pRB tumor suppressor protein

Data up to Jan 2025

Published1997
Citations198
References34

Total Citations Per Year

Abstract

References (34)

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Retinoblastoma protein switches the E2F site from positive to negative element

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Deregulated expression of E2F-1 induces S-phase entry and leads to apoptosis.

1994 • 515 citations

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1995 • 494 citations

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1992 • 413 citations

Differential regulation of E2F transactivation by cyclin/cdk2 complexes.

1994 • 393 citations

Cyclin A-kinase regulation of E2F-1 DNA binding function underlies suppression of an S phase checkpoint

1995 • 361 citations

E2F-1-mediated transactivation is inhibited by complex formation with the retinoblastoma susceptibility gene product.

1993 • 353 citations

Binding to DNA and the Retinoblastoma Gene Product Promoted by Complex Formation of Different E2F Family Members

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Selective protein degradation: A journey's end within the proteasome

1995 • 259 citations

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1994 • 254 citations

A potent transrepression domain in the retinoblastoma protein induces a cell cycle arrest when bound to E2F sites.

1995 • 248 citations

In Vivo Association of E2F and DP Family Proteins

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The retinoblastoma gene product protects E2F-1 from degradation by the ubiquitin-proteasome pathway.

1996 • 228 citations

Degradation of E2F by the ubiquitin-proteasome pathway: regulation by retinoblastoma family proteins and adenovirus transforming proteins.

1996 • 207 citations

Multiple members of the E2F transcription factor family are the products of oncogenes.

1995 • 197 citations

Deregulated Expression of E2F-1 Induces S-Phase Entry and Leads to Apoptosis

1994 • 160 citations

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mUBC9, a Novel Adenovirus E1A-interacting Protein That Complements a Yeast Cell Cycle Defect

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Regulation of E2F through ubiquitin–proteasome-dependent degradation: Stabilization by… (1997) – Proceedings of the National Academy of Sciences | Metascience Observatory Explorer