首页> 美国卫生研究院文献>Aging Cell >Age-associated reduction of cellular spreading/mechanical force up-regulates matrix metalloproteinase-1 expression and collagen fibril fragmentation via c-Jun/AP-1 in human dermal fibroblasts
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Age-associated reduction of cellular spreading/mechanical force up-regulates matrix metalloproteinase-1 expression and collagen fibril fragmentation via c-Jun/AP-1 in human dermal fibroblasts

机译:与年龄相关的细胞扩散/机械力降低通过人皮肤成纤维细胞中的c-Jun / AP-1上调基质金属蛋白酶-1表达和胶原原纤维片段化

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摘要

The dermal compartment of human skin is largely composed of dense collagen-rich fibrils, which provide structural and mechanical support. Skin dermal fibroblasts, the major collagen-producing cells, are interact with collagen fibrils to maintain cell spreading and mechanical force for function. A characteristic feature of aged human skin is fragmentation of collagen fibrils, which is initiated by matrix metalloproteinase 1 (MMP-1). Fragmentation impairs fibroblast attachment and thereby reduces spreading. Here, we investigated the relationship among fibroblast spreading, mechanical force, MMP-1 expression, and collagen fibril fragmentation. Reduced fibroblast spreading due to cytoskeletal disruption was associated with reduced cellular mechanical force, as determined by atomic force microscopy. These reductions substantially induced MMP-1 expression, which led to collagen fibril fragmentation and disorganization in three-dimensional collagen lattices. Constraining fibroblast size by culturing on slides coated with collagen micropatterns also significantly induced MMP-1 expression. Reduced spreading/mechanical force induced transcription factor c-Jun and its binding to a canonical AP-1 binding site in the MMP-1 proximal promoter. Blocking c-Jun function with dominant negative mutant c-Jun significantly reduced induction of MMP-1 expression in response to reduced spreading/mechanical force. Furthermore, restoration of fibroblast spreading/mechanical force led to decline of c-Jun and MMP-1 levels and eliminated collagen fibril fragmentation and disorganization. These data reveal a novel mechanism by which alteration of fibroblast shape/mechanical force regulates c-Jun/AP-1-dependent expression of MMP-1 and consequent collagen fibril fragmentation. This mechanism provides a foundation for understanding the cellular and molecular basis of age-related collagen fragmentation in human skin.
机译:人皮肤的真皮隔室主要由致密的富含胶原蛋白的原纤维组成,可提供结构和机械支持。皮肤真皮成纤维细胞是主要的产生胶原蛋白的细胞,它们与胶原蛋白原纤维相互作用,以维持细胞扩散和功能性机械力。老年人皮肤的特征是胶原纤维断裂,这是由基质金属蛋白酶1(MMP-1)引发的。破碎会损害成纤维细胞的附着,从而减少扩散。在这里,我们调查了成纤维细胞扩散,机械力,MMP-1表达和胶原纤维断裂之间的关系。如通过原子力显微镜所确定的,由于细胞骨架破坏引起的成纤维细胞扩散减少与细胞机械力降低有关。这些减少基本上诱导了MMP-1表达,从而导致胶原原纤维断裂和三维胶原蛋白晶格混乱。通过在涂有胶原蛋白微图案的载玻片上进行培养来限制成纤维细胞的大小,也可显着诱导MMP-1表达。降低的传播/机械力诱导了转录因子c-Jun及其与MMP-1近端启动子中规范AP-1结合位点的结合。用显性阴性突变体c-Jun阻断c-Jun功能可显着降低MMP-1表达的诱导,以响应降低的扩散/机械力。此外,成纤维细胞扩散/机械力的恢复导致c-Jun和MMP-1水平下降,并消除了胶原原纤维的断裂和紊乱。这些数据揭示了一种新的机制,通过该机制,成纤维细胞形状/机械力的改变调节了MMP-1的c-Jun / AP-1依赖性表达,进而调节了胶原原纤维的断裂。该机制为理解人类皮肤中与年龄相关的胶原蛋白断裂的细胞和分子基础提供了基础。

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