Carberry Katrin, Wiesenfahrt Tobias, Windoffer Reinhard, Bossinger Olaf, Leube Rudolf E
Institute of Molecular and Cellular Anatomy, RWTH Aachen University, 52074 Aachen, Germany.
Cell Motil Cytoskeleton. 2009 Oct;66(10):852-64. doi: 10.1002/cm.20372.
Intermediate filaments (IFs) make up one of the three major fibrous cytoskeletal systems in metazoans. Numerous IF polypeptides are synthesized in cell type-specific combinations suggesting specialized functions. The review concentrates on IFs in the model organism Caenorhabditis elegans which carries great promise to elucidate the still unresolved mechanisms of IF assembly into complex networks and to determine IF function in a living organism. In contrast to Drosophila melanogaster, which lacks cytoplasmic IFs altogether, the nematode genome contains 11 genes coding for cytoplasmic IFs and only a single gene for a nuclear lamin. Its cytoplasmic IFs are expressed in developmentally and spatially defined patterns. As an example we present the case of the intestinal IFs which are abundant in the mechanically resilient endotube, a prominent feature of the C. elegans intestinal terminal web region. This IF-rich structure brings together all three cytoskeletal filaments that are integrated into a coherent entity by the C. elegans apical junction (CeAJ) thereby completely surrounding and stabilizing the intestinal lumen with its characteristic brush border. Concepts on the developmental establishment of the endotube in relation to polarization and its function for maintenance of epithelial integrity are discussed. Furthermore, possible connections of the cytoplasmic cytoskeleton to the nuclear lamin IFs and the importance of these links for nuclear positioning are summarized.
中间丝(IFs)构成了后生动物三大主要纤维细胞骨架系统之一。许多中间丝多肽以细胞类型特异性组合的方式合成,这表明它们具有特定的功能。本综述聚焦于模式生物秀丽隐杆线虫中的中间丝,它极有希望阐明中间丝组装成复杂网络的尚未解决的机制,并确定中间丝在活生物体中的功能。与完全缺乏细胞质中间丝的黑腹果蝇不同,线虫基因组包含11个编码细胞质中间丝的基因,而编码核纤层蛋白的基因只有一个。其细胞质中间丝以发育和空间限定的模式表达。作为一个例子,我们介绍肠道中间丝的情况,它们在机械弹性内管中丰富,这是秀丽隐杆线虫肠道末端网区域的一个显著特征。这个富含中间丝的结构将所有三种细胞骨架丝聚集在一起,这些丝通过秀丽隐杆线虫顶端连接(CeAJ)整合为一个连贯的整体,从而完全包围并稳定具有特征性刷状缘的肠腔。讨论了内管发育建立与极化的关系及其对维持上皮完整性的作用。此外,总结了细胞质细胞骨架与核纤层中间丝可能的联系以及这些联系对核定位的重要性。