Petrou Petros, Pavlakis Evangelos, Dalezios Yannis, Chalepakis Georges
Department of Biology, University of Crete, 71409 Heraklion, Crete, Greece.
Matrix Biol. 2007 Oct;26(8):652-8. doi: 10.1016/j.matbio.2007.05.008. Epub 2007 Jun 6.
The Fraser syndrome protein Fras1 and the structurally related proteins Frem1, Frem2 and Frem3 comprise a novel family of extracellular matrix proteins implicated in the structural adhesion of the embryonic epidermis to the underlying mesenchyme. Fras1, Frem1 and Frem2 have been shown to be simultaneously and interdependently stabilized in the basement membrane by forming a ternary complex located underneath the lamina densa. However, the functional relationships between Frem3 and the other Fras1/Frem proteins remain unknown. Here we show that in the absence of Fras1 the basement membrane localization of Frem3 remains unaffected in contrast to Frem1 and Frem2 which are completely abolished from the basement membrane. This indicates that although Frem3 is localized in the sublamina densa similar to Fras1, Frem1 and Frem2 yet it is anchored in the basement membrane independently. We further demonstrate that loss of Fras1 results in the accumulation of Frem2 within epithelial cells. This finding reveals that Fras1 is not only essential as a component of a macromolecular complex for the extracellular stabilization of Frem2 but it is also required for its proper intracellular trafficking and export from embryonic epithelial cells.
弗雷泽综合征蛋白Fras1以及结构相关蛋白Frem1、Frem2和Frem3构成了一个新的细胞外基质蛋白家族,与胚胎表皮与下方间充质的结构黏附有关。已表明Fras1、Frem1和Frem2通过在致密层下方形成三元复合物,在基底膜中同时且相互依赖地稳定存在。然而,Frem3与其他Fras1/Frem蛋白之间的功能关系仍不清楚。在这里我们表明,在缺乏Fras1的情况下,Frem3在基底膜中的定位不受影响,这与Frem1和Frem2从基底膜中完全消失形成对比。这表明,尽管Frem3与Fras1、Frem1和Frem2一样定位于致密层下方,但它独立地锚定在基底膜中。我们进一步证明,Fras1的缺失导致Frem2在上皮细胞内积累。这一发现表明,Fras1不仅作为大分子复合物的一个成分对于Frem2的细胞外稳定至关重要,而且对于其在胚胎上皮细胞中的正确细胞内运输和输出也是必需的。