Advanced Research, L'Oréal Research and Innovation, 93600, Aulnay-sous-Bois, France.
Advanced Research, L'Oréal Research and Innovation, 93600, Aulnay-sous-Bois, France.
Mech Ageing Dev. 2019 Jan;177:157-181. doi: 10.1016/j.mad.2018.06.003. Epub 2018 Jun 18.
Deciphering the characteristics of dermal fibroblasts is critical to further understand skin ageing. We have conducted a genome-wide transcriptomic characterization of papillary (Fp) and reticular (Fr) fibroblasts extracted from human skin samples corresponding to younger and older adult ages. From this screen, biomarkers suitable for the assessment of chronological ageing were identified, and extrapolated to the context of photo-damaged skin. In particular, KANK4, ACAN, Col XI α1, and PSG1, were expressed at an increased level in both chronologically-aged and photo-damaged skin. Notably, analysis focused on Fp identified significant transcriptional signatures associated with ageing, which included transcripts related to extracellular matrix, focal adhesion points, and cytoskeleton, thus suggesting functional consequences on tissue structure. At a cellular level, an increased contractility was identified as a property of aged Fp. Accordingly, further investigations were conducted on the KN motif and ankyrin repeat-containing protein 4 (KANK4) to explore its possible function as an original effector involved in the acquisition of aged properties in Fp, notably their increased contractility. We show that KANK4 down-modulation using siRNA led to increased Rho pathway activity, thereby reducing their contractility. As a proof-of-principle, the present study shows that targeting KANK4 was efficient to attenuate aged Fp characteristics.
解析皮肤成纤维细胞的特征对于进一步了解皮肤衰老至关重要。我们对源自年轻和老年成人皮肤样本的乳头状(Fp)和网状(Fr)成纤维细胞进行了全基因组转录组特征分析。通过该筛选,确定了适合评估时间性衰老的生物标志物,并将其外推到光损伤皮肤的背景下。特别是 KANK4、ACAN、Col XI α1 和 PSG1 在时间性老化和光损伤皮肤中均呈高表达。值得注意的是,对 Fp 的分析确定了与衰老相关的显著转录特征,其中包括与细胞外基质、焦点黏附点和细胞骨架相关的转录物,从而暗示了对组织结构的功能后果。在细胞水平上,鉴定出增加的收缩性是 Fp 老化的特征。因此,对 KN 基序和包含锚蛋白重复的蛋白 4(KANK4)进行了进一步研究,以探索其作为一种原始效应物的可能功能,特别是其增加的收缩性。我们表明,使用 siRNA 下调 KANK4 导致 Rho 途径活性增加,从而降低其收缩性。作为原理验证,本研究表明靶向 KANK4 可有效减弱老化 Fp 的特征。