BC Professional Fire Fighters' Burn and Wound Healing Laboratory, Department of Surgery, University of British Columbia, Vancouver, BC, Canada.
J Cell Physiol. 2011 Dec;226(12):3114-20. doi: 10.1002/jcp.22666.
As wound healing proceeds into the tissue remodeling phase, cellular interactions become dominated by the interplay of keratinocytes with fibroblasts in the skin, which is largely mediated through paracrine signaling and greatly affects the molecular constitution of the extracellular matrix. We have recently identified aminopeptidase N (APN)/CD13 as a potential fibroblast receptor for 14-3-3 sigma (also known as stratifin), a keratinocyte-releasable protein with potent matrix metalloproteinase 1 (MMP1) stimulatory activity. The present study demonstrates that the expression of APN on dermal fibroblasts is regulated through paracrine signaling by keratinocyte-derived soluble factors. By using an in vitro keratinocyte-fibroblast co-culture system, we showed that APN expression in dermal fibroblasts is induced in the presence of keratinocytes or in response to keratinocyte-conditioned medium. Conditioned medium collected from differentiated keratinocytes further increases APN protein production, suggesting an amplified stimulatory effect by keratinocyte differentiation. Recombinant stratifin potently induces APN synthesis in a dose-dependent manner. A consistent correlation between the protein expression levels of APN and MMP1 was also observed. These results confirm paracrine regulation of APN expression in dermal fibroblasts by keratinocyte-derived stimuli, in particular stratifin, and provide evidence that APN may serve as a target in the regulation of MMP1 expression in epidermal-mesenchymal communication.
随着伤口愈合进入组织重塑阶段,细胞间的相互作用逐渐由皮肤中的角质细胞与成纤维细胞之间的相互作用所主导,这主要是通过旁分泌信号传导来实现的,并且极大地影响了细胞外基质的分子构成。我们最近发现氨肽酶 N (APN)/CD13 是 14-3-3 西格玛(也称为 stratifin)的潜在成纤维细胞受体,14-3-3 西格玛是一种由角质细胞释放的蛋白,具有很强的基质金属蛋白酶 1 (MMP1) 刺激活性。本研究表明,角质细胞衍生的可溶性因子通过旁分泌信号调节真皮成纤维细胞中 APN 的表达。通过使用体外角质细胞和成纤维细胞共培养系统,我们表明在存在角质细胞或对角质细胞条件培养基的反应中,真皮成纤维细胞中的 APN 表达被诱导。从分化的角质细胞收集的条件培养基进一步增加了 APN 蛋白的产生,表明角质细胞分化具有放大的刺激作用。重组 stratifin 以剂量依赖性方式强烈诱导 APN 合成。还观察到 APN 和 MMP1 的蛋白表达水平之间存在一致的相关性。这些结果证实了角质细胞衍生的刺激物通过旁分泌调节真皮成纤维细胞中 APN 的表达,特别是 stratifin,并提供了证据表明 APN 可能作为表皮-间充质通讯中 MMP1 表达调节的靶标。