メラノサイトとメラノーマ細胞からのiPS細胞樹立にはSox2は必要ない | 再生医療が描く未来 -iPS細胞とES細胞-

メラノサイトとメラノーマ細胞からのiPS細胞樹立にはSox2は必要ない

ハーバード大学のKonrad Hochedlingerらのグループによって、マウスおよびヒトのメラノサイトやマウスのメラノーマ細胞株であるR545からは、線維芽細胞からよりも効率的にiPS細胞が樹立でき、それにはSox2は必要ないという論文が発表されました。

J Cell Sci. 2009 Sep 1. [Epub ahead of print]
Sox2 is dispensable for the reprogramming of melanocytes and melanoma cells into induced pluripotent stem cells.
Utikal J, Maherali N, Kulalert W, Hochedlinger K.
http://www.ncbi.nlm.nih.gov/pubmed/19723802?ordinalpos=1&itool=EntrezSystem2.PEntrez.Pubmed.Pubmed_ResultsPanel.Pubmed_DefaultReportPanel.Pubmed_RVDocSum

Induced pluripotent stem cells (iPSCs) have been derived at low frequencies from different cell types through ectopic expression of the transcription factors Oct4 and Sox2, combined with either Klf4 and c-Myc or Lin28 and Nanog. In order to generate iPSCs more effectively, it will be crucial to identify somatic cells that are easily accessible and possibly require fewer factors for conversion into iPSCs. Here, we show that both human and mouse melanocytes give rise to iPSCs at higher efficiencies than fibroblasts. Moreover, we demonstrate that a mouse malignant melanoma cell line, which has previously been reprogrammed into embryonic stem cells by nuclear transfer, remains equally amenable to reprogramming into iPSCs by these transcription factors. In contrast to skin fibroblasts, melanocytes and melanoma cells did not require ectopic Sox2 expression for conversion into iPSCs. iPSC lines from melanocytic cells expressed pluripotency markers, formed teratomas and contributed to viable chimeric mice with germ line transmission. Our results identify skin melanocytes as an alternative source for deriving patient-specific iPSCs at increased efficiency and with fewer genetic elements. In addition, our results suggest that cancer cells remain susceptible to transcription factor-mediated reprogramming, which should facilitate the study of epigenetic changes in human cancer.