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UVA and UVB Irradiation Differentially Regulate microRNA Expression in Human Primary Keratinocytes

Overview of attention for article published in PLOS ONE, December 2013
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Title
UVA and UVB Irradiation Differentially Regulate microRNA Expression in Human Primary Keratinocytes
Published in
PLOS ONE, December 2013
DOI 10.1371/journal.pone.0083392
Pubmed ID
Authors

Anne Kraemer, I-Peng Chen, Stefan Henning, Alexandra Faust, Beate Volkmer, Michael J. Atkinson, Simone Moertl, Ruediger Greinert

Abstract

MicroRNA (miRNA)-mediated regulation of the cellular transcriptome is an important epigenetic mechanism for fine-tuning regulatory pathways. These include processes related to skin cancer development, progression and metastasis. However, little is known about the role of microRNA as an intermediary in the carcinogenic processes following exposure to UV-radiation. We now show that UV irradiation of human primary keratinocytes modulates the expression of several cellular miRNAs. A common set of miRNAs was influenced by exposure to both UVA and UVB. However, each wavelength band also activated a distinct subset of miRNAs. Common sets of UVA- and UVB-regulated miRNAs harbor the regulatory elements GLYCA-nTRE, GATA-1-undefined-site-13 or Hox-2.3-undefined-site-2 in their promoters. In silico analysis indicates that the differentially expressed miRNAs responding to UV have potential functions in the cellular pathways of cell growth and proliferation. Interestingly, the expression of miR-23b, which is a differentiation marker of human keratinocytes, is remarkably up-regulated after UVA irradiation. Studying the interaction between miR-23b and its putative skin-relevant targets using a Luciferase reporter assay revealed that RRAS2 (related RAS viral oncogene homolog 2), which is strongly expressed in highly aggressive malignant skin cancer, to be a direct target of miR-23b. This study demonstrates for the first time a differential miRNA response to UVA and UVB in human primary keratinocytes. This suggests that selective regulation of signaling pathways occurs in response to different UV energies. This may shed new light on miRNA-regulated carcinogenic processes involved in UV-induced skin carcinogenesis.

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Geographical breakdown

Country Count As %
United States 1 1%
Portugal 1 1%
Denmark 1 1%
Unknown 80 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 19 23%
Researcher 18 22%
Student > Master 12 14%
Student > Bachelor 10 12%
Other 4 5%
Other 10 12%
Unknown 10 12%
Readers by discipline Count As %
Agricultural and Biological Sciences 28 34%
Biochemistry, Genetics and Molecular Biology 18 22%
Medicine and Dentistry 10 12%
Immunology and Microbiology 5 6%
Engineering 2 2%
Other 8 10%
Unknown 12 14%