Department of Oral Biology, College of Dentistry, University of Nebraska Medical Center, Lincoln, Nebraska, United States of America.
PLoS One. 2013 Oct 4;8(10):e77012. doi: 10.1371/journal.pone.0077012. eCollection 2013.
Desmosomes are prominent cell-cell adhesive junctions in stratified squamous epithelia and disruption of desmosomal adhesion has been shown to have dramatic effects on the function and integrity of these tissues. During normal physiologic processes, such as tissue development and wound healing, intercellular adhesion must be modified locally to allow coordinated cell movements. The mechanisms that control junction integrity and adhesive strength under these conditions are poorly understood. We utilized a proteomics approach to identify plakophilin-3 associated proteins and identified the 14-3-3 family member stratifin. Stratifin interacts specifically with plakophilin-3 and not with other plakophilin isoforms and mutation analysis demonstrated the binding site includes serine 285 in the amino terminal head domain of plakophilin-3. Stratifin interacts with a cytoplasmic pool of plakophilin-3 and is not associated with the desmosome in cultured cells. FRAP analysis revealed that decreased stratifin expression leads to an increase in the exchange rate of cytoplasmic plakophilin-3/GFP with the pool of plakophilin-3/GFP in the desmosome resulting in decreased desmosomal adhesion and increased cell migration. We propose a model by which stratifin plays a role in regulating plakophilin-3 incorporation into the desmosomal plaque by forming a plakophilin-3 stratifin complex in the cytosol and thereby affecting desmosome dynamics in squamous epithelial cells.
桥粒是复层扁平上皮细胞中重要的细胞间黏附连接,桥粒黏附的破坏对这些组织的功能和完整性有显著的影响。在组织发育和伤口愈合等正常生理过程中,细胞间黏附必须局部改变,以允许细胞协调运动。在这些条件下控制连接完整性和黏附强度的机制还了解甚少。我们利用蛋白质组学方法来鉴定桥粒斑蛋白-3 相关蛋白,并鉴定了 14-3-3 家族成员 stratifin。Stratifin 与 plakophilin-3 特异性相互作用,而不与其他 plakophilin 亚型相互作用,突变分析表明结合位点包括 plakophilin-3 氨基末端头部结构域中的丝氨酸 285。Stratifin 与细胞质中的 plakophilin-3 池相互作用,在培养细胞中与桥粒无关。FRAP 分析显示,stratifin 表达的减少导致细胞质 plakophilin-3/GFP 与桥粒中 plakophilin-3/GFP 池的交换率增加,导致桥粒黏附减少和细胞迁移增加。我们提出了一个模型,其中 stratifin 通过在细胞质中形成 plakophilin-3-stratifin 复合物来调节 plakophilin-3 掺入桥粒斑,从而影响鳞状上皮细胞中的桥粒动力学。