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Publication : Loss of Epidermal HIF-1α Blocks UVB-Induced Tumorigenesis by Affecting DNA Repair Capacity and Oxidative Stress.

First Author  Mahfouf W Year  2019
Journal  J Invest Dermatol Volume  139
Issue  9 Pages  2016-2028.e7
PubMed ID  30878676 Mgi Jnum  J:283720
Mgi Id  MGI:6388020 Doi  10.1016/j.jid.2019.01.035
Citation  Mahfouf W, et al. (2019) Loss of Epidermal HIF-1alpha Blocks UVB-Induced Tumorigenesis by Affecting DNA Repair Capacity and Oxidative Stress. J Invest Dermatol 139(9):2016-2028.e7
abstractText  HIF-1alpha is constitutively expressed in mouse and human epidermis. It plays a crucial role in skin physiology, including the response of keratinocytes to UVR. However, little information is available about its role in photocarcinogenesis. Using a multistage model of UVB radiation-induced skin cancer, we show that the knockout of Hif-1alpha in the epidermis prevents tumorigenesis but at the same time triggers the formation of hyperkeratotic plaques. Our results indicate that the absence of oncogenic transformation in Hif-1alpha-ablated mice is related to increased DNA repair in keratinocytes, whereas the formation of hyperkeratotic plaques is caused by an increase in the levels of reactive oxygen species. Indeed, impairing the DNA repair machinery by ablating xeroderma pigmentosum C restored the UVB-induced neoplastic transformation of Hif-1alpha-ablated keratinocytes, whereas the development of hyperkeratotic plaques was blocked by chronic antioxidant treatment. We conclude that HIF-1alpha plays a procarcinogenic role in UVB-induced tumorigenesis.
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