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Cultivating a Three-dimensional Reconstructed Human Epidermis at a Large Scale
Published on: May 28, 2021
PRPF19 modulates morphology and growth behavior in a cell culture model of human skin
Lisa Kleissl1,2,3, Regina Weinmüllner4,5, Ingo Lämmermann4,5
1Ludwig Boltzmann Institute for Rare and Undiagnosed Diseases, Vienna, Austria.
Abstract:
The skin provides one of the most visual aging transformations in humans, and premature aging as a consequence of oxidative stress and DNA damage is a frequently seen effect. Cells of the human skin are continuously exposed to endogenous and exogenous DNA damaging factors, which can cause DNA damage in all phases of the cell cycle. Increased levels of DNA damage and/or defective DNA repair can, therefore, accelerate the aging process and/or lead to age-related diseases like cancer. It is not yet clear if enhanced activity of DNA repair factors could increase the life or health span of human skin cells. In previous studies, we identified and characterized the human senescence evasion factor (SNEV)/pre-mRNA-processing factor (PRPF) 19 as a multitalented protein involved in mRNA splicing, DNA repair pathways and lifespan regulation. Here, we show that overexpression of PRPF19 in human dermal fibroblasts leads to a morphological change, reminiscent of juvenile, papillary fibroblasts, despite simultaneous expression of senescence markers. Moreover, conditioned media of this subpopulation showed a positive effect on keratinocyte repopulation of wounded areas. Taken together, these findings indicate that PRPF19 promotes cell viability and slows down the aging process in human skin.
Insights
The human senescence evasion factor (SNEV), also known as pre-mRNA-processing factor (PRPF) 19, may slow skin aging. Overexpressing PRPF19 in skin cells promotes viability and a more youthful appearance.
Area of Science:
- Dermatology
- Molecular Biology
- Cellular Aging
Background:
- Skin aging is visually apparent and accelerated by oxidative stress and DNA damage.
- DNA damage accumulation and impaired repair contribute to aging and age-related diseases like cancer.
- The role of enhanced DNA repair in extending skin cell healthspan remains unclear.
Purpose of the Study:
- To investigate the effect of overexpressing the human senescence evasion factor (SNEV)/pre-mRNA-processing factor (PRPF) 19 on human skin cells.
- To determine if PRPF19 can influence skin cell viability and aging processes.
Main Methods:
- Overexpression of PRPF19 in human dermal fibroblasts.
- Morphological analysis of fibroblasts.
- Assessment of conditioned media effects on keratinocyte wound healing.
Main Results:
- PRPF19 overexpression induced a juvenile, papillary fibroblast morphology.
- Senescence markers were still expressed despite morphological changes.
- Conditioned media from PRPF19-overexpressing cells enhanced keratinocyte repopulation of wounded areas.
Conclusions:
- PRPF19 promotes cell viability in human skin.
- PRPF19 appears to slow down the skin aging process.
- PRPF19 may be a key factor in maintaining skin healthspan.
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