Department of Dermatology, Medical University of Vienna, Spitalgasse 23, 1090 Vienna, Austria.
Department of Dermatology, Huashan Hospital, Fudan University, 12 Wulumuqi Zhong Road, Shanghai 200040, China.
Int J Mol Sci. 2022 Sep 21;23(19):11110. doi: 10.3390/ijms231911110.
Autophagy is a controlled mechanism of intracellular self-digestion with functions in metabolic adaptation to stress, in development, in proteostasis and in maintaining cellular homeostasis in ageing. Deletion of autophagy in epidermal keratinocytes does not prevent the formation of a functional epidermis and the permeability barrier but causes increased susceptibility to damage stress and metabolic alterations and accelerated ageing phenotypes. We here investigated how epidermal autophagy deficiency using Keratin 14 driven Atg7 deletion would affect the lipid composition of the epidermis of young and old mice. Using mass spectrometric lipidomics we found a reduction of age-related accumulation of storage lipids in the epidermis of autophagy-deficient mice, and specific changes in chain length and saturation of fatty acids in several lipid classes. Transcriptomics and immunostaining suggest that these changes are accompanied by changes in expression and localisation of lipid and fatty acid transporter proteins, most notably fatty acid binding protein 5 (FABP5) in autophagy knockouts. Thus, maintaining autophagic activity at an advanced age may be necessary to maintain epidermal lipid homeostasis in mammals.
自噬是一种细胞内自我消化的受控机制,具有在代谢适应应激、发育、蛋白质稳态和维持衰老细胞内平衡方面的功能。表皮角质形成细胞中自噬的缺失不会阻止功能性表皮和通透性屏障的形成,但会导致对损伤应激和代谢改变的易感性增加,并加速衰老表型。在这里,我们研究了表皮角质形成细胞中 Atg7 缺失引起的自噬缺陷如何影响年轻和年老小鼠表皮的脂质组成。使用质荷比质谱脂质组学,我们发现自噬缺陷小鼠表皮中与年龄相关的储存脂质积累减少,并且在几种脂质类别的脂肪酸链长和饱和度方面存在特定变化。转录组学和免疫染色表明,这些变化伴随着脂质和脂肪酸转运蛋白的表达和定位的变化,尤其是自噬敲除小鼠中脂肪酸结合蛋白 5 (FABP5)。因此,在老年时维持自噬活性可能对于维持哺乳动物表皮脂质内平衡是必需的。