Jenkins G, Redwood K L, Meadows L, Green M R
Biosciences Division, Colworth Laboratory, Unilever Research, Sharnbrook, Bedford, UK.
Eur J Biochem. 1999 Jul;263(1):93-103. doi: 10.1046/j.1432-1327.1999.00468.x.
Mechanical forces are known to play an important role in regulating cell function in a wide range of biological systems. This is of particular relevance to dermal fibroblast function, given that the skin is known to be held under an intrinsic natural tension. To understand more about the generation of force by dermal fibroblasts and their ability to respond to changes in it, we have studied the role of the beta1 integrin receptors expressed by dermal fibroblasts in their ability to generate tensional forces within a collagen type I matrix and the effect of altered tensional force on integrin expression by dermal fibroblasts. Using a purpose-built culture force monitor, function-blocking antibodies directed towards the beta1 receptors dramatically reduced the tensional forces generated by dermal fibroblasts in a 3D collagen I matrix. However, the specific involvement of alpha1 or alpha2 subunits could not be demonstrated. Analysis of cellular response demonstrated that cells isolated from contracting collagen gels expressed fourfold higher levels of alpha2 mRNA than cells isolated from fully restrained gels. The levels of beta1 messenger RNA were relatively unaffected by reductions in force. Cells exposed to single reductions in force, however, did not exhibit alterations in either alpha1 or beta1 mRNA levels. We propose, therefore that alpha2beta1 integrin receptor levels in dermal fibroblasts are not altered in response to single reductions of gel tension, but do change following a continual change in force and associated matrix re-organization
已知机械力在广泛的生物系统中调节细胞功能方面发挥着重要作用。鉴于已知皮肤处于内在的自然张力之下,这一点与真皮成纤维细胞功能尤为相关。为了更深入了解真皮成纤维细胞产生力的机制及其对力变化的反应能力,我们研究了真皮成纤维细胞表达的β1整合素受体在其在I型胶原基质中产生张力的能力中的作用,以及改变的张力对真皮成纤维细胞整合素表达的影响。使用专门构建的培养力监测器,针对β1受体的功能阻断抗体显著降低了真皮成纤维细胞在三维I型胶原基质中产生的张力。然而,无法证明α1或α2亚基的具体参与情况。细胞反应分析表明,从收缩的胶原凝胶中分离出的细胞表达的α2 mRNA水平比从完全受限的凝胶中分离出的细胞高四倍。β1信使RNA的水平相对不受力降低的影响。然而,暴露于单次力降低的细胞在α1或β1 mRNA水平上均未表现出改变。因此,我们提出,真皮成纤维细胞中的α2β1整合素受体水平不会因凝胶张力的单次降低而改变,但会在力的持续变化和相关基质重组后发生变化。