Institute of Animal Reproduction and Food Research, Polish Academy of Sciences, 10-748 Olsztyn, Poland.
Int J Mol Sci. 2018 Jul 4;19(7):1956. doi: 10.3390/ijms19071956.
Intensive research effort has focused on cellular and molecular mechanisms that regulate skin biology, including the phenomenon of scar-free skin healing during foetal life. Transcription factors are the key molecules that tune gene expression and either promote or suppress gene transcription. The epidermis is the source of transcription factors that regulate many functions of epidermal cells such as proliferation, differentiation, apoptosis, and migration. Furthermore, the activation of epidermal transcription factors also causes changes in the dermal compartment of the skin. This review focuses on the transcription factor Foxn1 and its role in skin biology. The regulatory function of Foxn1 in the skin relates to physiological (development and homeostasis) and pathological (skin wound healing) conditions. In particular, the pivotal role of Foxn1 in skin development and the acquisition of the adult skin phenotype, which coincides with losing the ability of scar-free healing, is discussed. Thus, genetic manipulations with Foxn1 expression, specifically those introducing conditional silencing in a Foxn1+/+ organism or its knock-in in a Foxn1−/− model, may provide future perspectives for regenerative medicine.
集中的研究精力主要集中在调节皮肤生物学的细胞和分子机制上,包括胎儿期无疤痕皮肤愈合的现象。转录因子是调节基因表达的关键分子,它们可以促进或抑制基因转录。表皮是调节表皮细胞多种功能(如增殖、分化、凋亡和迁移)的转录因子的来源。此外,表皮转录因子的激活也会导致皮肤真皮层的变化。本篇综述重点介绍转录因子 Foxn1 及其在皮肤生物学中的作用。Foxn1 在皮肤中的调节功能与生理(发育和稳态)和病理(皮肤伤口愈合)条件有关。特别是,Foxn1 在皮肤发育和获得成年皮肤表型中的关键作用,以及失去无疤痕愈合能力的巧合,将进行讨论。因此,Foxn1 表达的基因操作,特别是在 Foxn1+/+ 生物体中进行条件性沉默或在 Foxn1−/− 模型中进行敲入,可能为再生医学提供未来的前景。