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Human Papillomavirus-16 E7 Interacts with Glutathione S-Transferase P1 and Enhances Its Role in Cell Survival
Authors
A Claiborne
A De Luca
+60 more
A Felsani
A Sali
A Severino
Alessandra Giorgi
AM Helt
AM Jentzsch
Anna M. Mileo
Antonio Federico
Bruno Maras
C Chen
C Marchese
CC McIlwain
CJ Henderson
Claudia Abbruzzese
D Smotkin
Dong-Yan Jin
DR Patrick
DR Spitz
DT Dang
Emanuele Bellacchio
F Friedl
G D'Souza
G Mignogna
G Ricci
H Pfister
H zur Hausen
HM Geysen
JA Moscow
JD Hayes
JH Shim
K Munger
K Munger
K Seedorf
KD Tew
L Flohe
M Lo Bello
M. Eugenia Schininà
MA Whiteside
Marco G. Paggi
Mauro Picardo
ME McLaughlin-Drubin
ME McLaughlin-Drubin
NJ Maeji
P Boukamp
P Lavia
Paola Pisano
RA Pattillo
RC Cumming
S Awasthi
S Duensing
S Mouret
S Passi
SC Brooks
SS Magal
Stefano Mattarocci
T Wang
TM Kinsella
V Adler
Vittoria Maresca
X Lin
Publication date
1 January 2009
Publisher
Public Library of Science
Doi
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on
PubMed
Abstract
Background:Human Papillomavirus (HPV)-16 is a paradigm for "high-risk" HPVs, the causative agents of virtually all cervical carcinomas. HPV E6 and E7 viral genes are usually expressed in these tumors, suggesting key roles for their gene products, the E6 and E7 oncoproteins, in inducing malignant transformation.Methodology/Principal Findings:By protein-protein interaction analysis, using mass spectrometry, we identified glutathione S-transferase P1-1 (GSTP1) as a novel cellular partner of the HPV-16 E7 oncoprotein. Following mapping of the region in the HPV-16 E7 sequence that is involved in the interaction, we generated a three-dimensional molecular model of the complex between HPV-16 E7 and GSTP1, and used this to engineer a mutant molecule of HPV-16 E7 with strongly reduced affinity for GSTP1.When expressed in HaCaT human keratinocytes, HPV-16 E7 modified the equilibrium between the oxidized and reduced forms of GSTP1, thereby inhibiting JNK phosphorylation and its ability to induce apoptosis. Using GSTP1-deficient MCF-7 cancer cells and siRNA interference targeting GSTP1 in HaCaT keratinocytes expressing either wild-type or mutant HPV-16 E7, we uncovered a pivotal role for GSTP1 in the pro-survival program elicited by its binding with HPV-16 E7.Conclusions/Significance:This study provides further evidence of the transforming abilities of this oncoprotein, setting the groundwork for devising unique molecular tools that can both interfere with the interaction between HPV-16 E7 and GSTP1 and minimize the survival of HPV-16 E7-expressing cancer cells. © 2009 Mileo et al
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