Loss of robustness and addiction to IGF1 during early keratinocyte transformation by human Papilloma virus 16.

Infection of keratinocytes with high risk human Papilloma virus causes immortalization, and when followed by further mutations, leads to cervical cancer and other anogenital tumors. Here we monitor the progressive loss of robustness in an in vitro model of the early stages of transformation that com...

Full description

Bibliographic Details
Main Authors: Tamar Geiger, Alexander Levitzki
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2007-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC1904256?pdf=render
id doaj-dff698aba7db44c9b8e22b7cad99b9b8
record_format Article
spelling doaj-dff698aba7db44c9b8e22b7cad99b9b82020-11-24T21:48:32ZengPublic Library of Science (PLoS)PLoS ONE1932-62032007-01-0127e60510.1371/journal.pone.0000605Loss of robustness and addiction to IGF1 during early keratinocyte transformation by human Papilloma virus 16.Tamar GeigerAlexander LevitzkiInfection of keratinocytes with high risk human Papilloma virus causes immortalization, and when followed by further mutations, leads to cervical cancer and other anogenital tumors. Here we monitor the progressive loss of robustness in an in vitro model of the early stages of transformation that comprises normal keratinocytes and progressive passages of HPV16 immortalized cells. As transformation progresses, the cells acquire higher proliferation rates and gain the ability to grow in soft agar. Concurrently, the cells lose robustness, becoming more sensitive to serum starvation and DNA damage by Cisplatin. Loss of robustness in the course of transformation correlates with significant reductions in the activities of the anti-apoptotic proteins PKB/Akt, Erk, Jnk and p38 both under normal growth conditions and upon stress. In parallel, loss of robustness is manifested by the shrinkage of the number of growth factors that can rescue starving cells from apoptosis, with the emergence of dependence solely on IGF1. Treatment with IGF1 activates PKB/Akt and Jnk and through them inhibits p53, rescuing the cells from starvation. We conclude that transformation in this model induces higher susceptibility of cells to stress due to reduced anti-apoptotic signaling and hyper-activation of p53 upon stress.http://europepmc.org/articles/PMC1904256?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Tamar Geiger
Alexander Levitzki
spellingShingle Tamar Geiger
Alexander Levitzki
Loss of robustness and addiction to IGF1 during early keratinocyte transformation by human Papilloma virus 16.
PLoS ONE
author_facet Tamar Geiger
Alexander Levitzki
author_sort Tamar Geiger
title Loss of robustness and addiction to IGF1 during early keratinocyte transformation by human Papilloma virus 16.
title_short Loss of robustness and addiction to IGF1 during early keratinocyte transformation by human Papilloma virus 16.
title_full Loss of robustness and addiction to IGF1 during early keratinocyte transformation by human Papilloma virus 16.
title_fullStr Loss of robustness and addiction to IGF1 during early keratinocyte transformation by human Papilloma virus 16.
title_full_unstemmed Loss of robustness and addiction to IGF1 during early keratinocyte transformation by human Papilloma virus 16.
title_sort loss of robustness and addiction to igf1 during early keratinocyte transformation by human papilloma virus 16.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2007-01-01
description Infection of keratinocytes with high risk human Papilloma virus causes immortalization, and when followed by further mutations, leads to cervical cancer and other anogenital tumors. Here we monitor the progressive loss of robustness in an in vitro model of the early stages of transformation that comprises normal keratinocytes and progressive passages of HPV16 immortalized cells. As transformation progresses, the cells acquire higher proliferation rates and gain the ability to grow in soft agar. Concurrently, the cells lose robustness, becoming more sensitive to serum starvation and DNA damage by Cisplatin. Loss of robustness in the course of transformation correlates with significant reductions in the activities of the anti-apoptotic proteins PKB/Akt, Erk, Jnk and p38 both under normal growth conditions and upon stress. In parallel, loss of robustness is manifested by the shrinkage of the number of growth factors that can rescue starving cells from apoptosis, with the emergence of dependence solely on IGF1. Treatment with IGF1 activates PKB/Akt and Jnk and through them inhibits p53, rescuing the cells from starvation. We conclude that transformation in this model induces higher susceptibility of cells to stress due to reduced anti-apoptotic signaling and hyper-activation of p53 upon stress.
url http://europepmc.org/articles/PMC1904256?pdf=render
work_keys_str_mv AT tamargeiger lossofrobustnessandaddictiontoigf1duringearlykeratinocytetransformationbyhumanpapillomavirus16
AT alexanderlevitzki lossofrobustnessandaddictiontoigf1duringearlykeratinocytetransformationbyhumanpapillomavirus16
_version_ 1725891781067800576