Department of Plastic and Reconstructive Surgery, Osaka City University Graduate School of Medicine, Asahimachi, Abeno-ku, Osaka, Japan.
J Invest Dermatol. 2010 Jun;130(6):1624-35. doi: 10.1038/jid.2009.439. Epub 2010 Jan 28.
Epidermal cells adhere to the basement membrane zone through cell-matrix junctions termed hemidesmosomes. During wound healing, hemidesmosomes are disassembled to allow keratinocytes to move over wound sites. Such movement is mediated by both hemidesmosome protein complexes (HPCs) and focal contacts (FCs). In this study, we analyzed the interaction between HPCs and FCs in live HaCat cells expressing yellow fluorescent protein (YFP)-tagged beta4 integrin and cyan fluorescent protein (CFP)-tagged alpha-actinin as markers of HPCs and FCs, respectively. In HaCat cells migrating to repopulate wounds, FC proteins cluster rapidly in the direction of the wound. HPC assembly then follows and the newly formed HPCs occupy sites vacated by the disassembled FCs. HPC dynamics are dramatically reduced, and HaCat cells cease migration upon treatment with reagents that affect FC integrity/function. Upon treatment with reagents that destabilize HPCs, the dynamics of FCs in HaCat cells at the edges of wounds are enhanced, although FC assembly is irregular and the migration of the cells is aberrant. We also show that the complex interaction between hemidesmosomes and FCs in keratinocytes is myosin dependent and requires energy. In summary, we suggest that HPCs and FCs dynamics are tightly co-regulated in keratinocytes undergoing migration during wound healing.
表皮细胞通过细胞-基质连接附着在基底膜区,这些连接被称为半桥粒。在伤口愈合过程中,半桥粒会解体,以使角质形成细胞能够在伤口部位移动。这种运动是由半桥粒蛋白复合物(HPCs)和焦点接触(FCs)介导的。在这项研究中,我们分析了在表达黄色荧光蛋白(YFP)标记的β4 整合素和青色荧光蛋白(CFP)标记的α-辅肌动蛋白的活 HaCat 细胞中 HPC 和 FC 之间的相互作用,分别作为 HPC 和 FC 的标志物。在迁移以重新填充伤口的 HaCat 细胞中,FC 蛋白迅速在伤口方向上聚集。然后组装 HPC,新形成的 HPC 占据解体的 FC 腾出的位置。HPC 动力学显著降低,并且在用影响 FC 完整性/功能的试剂处理后 HaCat 细胞停止迁移。在用破坏 HPC 的试剂处理后,尽管 FC 组装不规则且细胞迁移异常,但伤口边缘 HaCat 细胞中的 FC 动力学增强。我们还表明,在伤口愈合过程中迁移的角质形成细胞中半桥粒和 FC 之间的复杂相互作用依赖于肌球蛋白并需要能量。总之,我们认为在伤口愈合过程中迁移的角质形成细胞中 HPC 和 FC 的动力学紧密协同调节。