| Literature DB >> 25080976 |
Mahdi Mojallal1, Yujuan Zheng1, Sara Hultin2, Stéphane Audebert3, Tanja van Harn2, Per Johnsson2, Claes Lenander2, Nicolas Fritz4, Christin Mieth5, Martin Corcoran2, Frédérique Lembo3, Marja Hallström2, Johan Hartman2, Nathalie M Mazure6, Thomas Weide7, Dan Grandér2, Jean-Paul Borg3, Per Uhlén4, Lars Holmgren2.
Abstract
The establishment and maintenance of apical-basal cell polarity is essential for the functionality of glandular epithelia. Cell polarity is often lost in advanced tumours correlating with acquisition of invasive and malignant properties. Despite extensive knowledge regarding the formation and maintenance of polarity, the mechanisms that deregulate polarity in metastasizing cells remain to be fully characterized. Here we show that AmotL2 expression correlates with loss of tissue architecture in tumours from human breast and colon cancer patients. We further show that hypoxic stress results in activation of c-Fos-dependent expression of AmotL2 leading to loss of polarity. c-Fos/hypoxia-induced p60 AmotL2 interacts with the Crb3 and Par3 polarity complexes retaining them in large vesicles and preventing them from reaching the apical membrane. The resulting loss of polarity potentiates the response to invasive cues in vitro and in vivo in mice. These data provide a molecular mechanism how hypoxic stress deregulates cell polarity during tumour progression.Entities:
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Year: 2014 PMID: 25080976 DOI: 10.1038/ncomms5557
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919