Department of Dermatology, University of Rochester Medical Center, Rochester, New York, USA.
Department of Microbiology and Immunology, University of Rochester Medical Center, Rochester, New York, USA.
Exp Dermatol. 2024 May;33(5):e15084. doi: 10.1111/exd.15084.
The transmembrane protein claudin-1 is critical for formation of the epidermal barrier structure called tight junctions (TJ) and has been shown to be important in multiple disease states. These include neonatal ichthyosis and sclerosing cholangitis syndrome, atopic dermatitis and various viral infections. To develop a model to investigate the role of claudin-1 in different disease settings, we used CRISPR/Cas9 to generate human immortalized keratinocyte (KC) lines lacking claudin-1 (CLDN1 KO). We then determined whether loss of claudin-1 expression affects epidermal barrier formation/function and KC differentiation/stratification. The absence of claudin-1 resulted in significantly reduced barrier function in both monolayer and organotypic cultures. CLDN1 KO cells demonstrated decreases in gene transcripts encoding the barrier protein filaggrin and the differentiation marker cytokeratin-10. Marked morphological differences were also observed in CLDN1 KO organotypic cultures including diminished stratification and reduced formation of the stratum granulosum. We also detected increased proliferative KC in the basale layer of CLDN1 KO organotypic cultures. These results further support the role of claudin-1 in epidermal barrier and suggest an additional role of this protein in appropriate stratification of the epidermis.
跨膜蛋白 Claudin-1 对于形成称为紧密连接 (TJ) 的表皮屏障结构至关重要,并且已被证明在多种疾病状态中很重要。这些疾病包括新生儿鱼鳞病和硬化性胆管炎综合征、特应性皮炎和各种病毒感染。为了建立一个模型来研究 Claudin-1 在不同疾病环境中的作用,我们使用 CRISPR/Cas9 生成缺乏 Claudin-1(CLDN1 KO)的人永生化角质形成细胞 (KC) 系。然后,我们确定 Claudin-1 表达的缺失是否会影响表皮屏障的形成/功能以及 KC 的分化/分层。 Claudin-1 的缺失导致单层和器官型培养物中的屏障功能明显降低。CLDN1 KO 细胞中编码屏障蛋白丝聚蛋白和分化标志物角蛋白 10 的基因转录本减少。在 CLDN1 KO 器官型培养物中还观察到明显的形态学差异,包括分层减少和颗粒层形成减少。我们还检测到 CLDN1 KO 器官型培养物中基底细胞层的增殖性 KC 增加。这些结果进一步支持 Claudin-1 在表皮屏障中的作用,并表明该蛋白在表皮的适当分层中具有额外的作用。