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Ultraviolet responses of Gorlin syndrome primary skin cells
Author(s) -
Brellier F.,
Valin A.,
ChevallierLagente O.,
Gorry P.,
Avril M.F.,
Magnaldo T.
Publication year - 2008
Publication title -
british journal of dermatology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.304
H-Index - 179
eISSN - 1365-2133
pISSN - 0007-0963
DOI - 10.1111/j.1365-2133.2008.08650.x
Subject(s) - humanities , art
Summary Background Gorlin syndrome, or naevoid basal cell carcinoma syndrome (NBCCS), is an autosomal dominant disorder associated with mutations in the PTCH1 gene, which encodes the receptor of SONIC HEDGEHOG. In addition to developmental abnormalities, patients with NBCCS are prone to basal cell carcinoma (BCC), the most frequent type of nonmelanoma skin cancer in humans. Objectives As ultraviolet (UV) exposure plays a prominent role in the development of sporadic BCC, we aimed to determine whether primary NBCCS skin cells exhibit differential responses to UV exposure compared with wild‐type (WT) skin cells. Methods Primary fibroblast and keratinocyte strains were isolated from nonlesional skin biopsies of 10 patients with characteristic NBCCS traits. After identification of PTCH1 mutations, capacities of NBCCS cells to repair UV‐induced DNA lesions and to survive after UV irradiation, as well as p53 responses, were compared with those of WT skin cells. Results The c1763insG PTCH1 mutation is described for the first time. DNA repair and cell survival analyses following UV irradiation revealed no obvious differences between responses of NBCCS and WT fibroblasts and keratinocytes. However, p53 accumulation after UV irradiation was abnormally persistent in all NBCCS primary keratinocyte strains compared with WT keratinocytes. Conclusions Our observations that NBCCS cells harbour normal DNA repair and survival capacities following UV irradiation better explain that BCC proneness of patients with NBCCS does not solely concern body areas exposed to sunlight and suggest rather that it might be due to cell cycle alterations.