Muriel Joaquin M, Xu Xuehong, Kramer James M, Vogel Bruce E
Program in Cell Structure and Development, Medical Biotechnology Center, University of Maryland Biotechnology Institute, Baltimore, Maryland, USA.
Dev Dyn. 2006 Oct;235(10):2632-40. doi: 10.1002/dvdy.20888.
Fibulin-1C and fibulin-1D splice variants have been conserved throughout metazoan evolution and have distinct functions in Caenorhabditis elegans development. Both splice variants are required for the assembly of hemidesmosome-mediated mechanosensory neuron and uterine attachments, although the molecular associations that underlie their distinct functions at these locations are not known. Here, we show that the assembly of fibulin-1C and fibulin-1D splice variants at these anchorages is dependent upon distinct components of the extracellular matrix (ECM): Fibulin-1D assembly at uterine and mechanosensory neurons attachments is dependent upon a perlecan/ UNC-52 splice variant that includes alternately spliced IG8-IG10, whereas the assembly of fibulin-1C at mechanosensory neuron attachments is dependent upon laminin/ EPI-1. These data not only indicate that fibulin-1C and fibulin-1D are components of distinct networks of ECM but also demonstrates a novel function for a major class of perlecan splice variants found in C. elegans and mouse. In addition, we demonstrate that overexpression of another ECM protein, collagen XVIII, can suppress gonad morphogenesis defects associated with loss of fibulin-1C, suggesting that some genetic defects that result in a weakened basement membrane can be compensated by overexpression of genes for ECM components that stabilize basement membranes.
纤连蛋白-1C和纤连蛋白-1D剪接变体在整个后生动物进化过程中都得以保留,并且在秀丽隐杆线虫的发育中具有不同的功能。这两种剪接变体都是半桥粒介导的机械感觉神经元和子宫附着组装所必需的,尽管尚不清楚它们在这些位置发挥不同功能的分子关联。在此,我们表明纤连蛋白-1C和纤连蛋白-1D剪接变体在这些锚定部位的组装依赖于细胞外基质(ECM)的不同成分:纤连蛋白-1D在子宫和机械感觉神经元附着部位的组装依赖于一种包含交替剪接的IG8-IG10的基底膜聚糖/UNC-52剪接变体,而纤连蛋白-1C在机械感觉神经元附着部位的组装依赖于层粘连蛋白/EPI-1。这些数据不仅表明纤连蛋白-1C和纤连蛋白-1D是ECM不同网络的组成成分,还证明了秀丽隐杆线虫和小鼠中发现的一大类基底膜聚糖剪接变体具有新功能。此外,我们证明另一种ECM蛋白胶原蛋白XVIII的过表达可以抑制与纤连蛋白-1C缺失相关的性腺形态发生缺陷,这表明一些导致基底膜减弱的遗传缺陷可以通过稳定基底膜的ECM成分基因的过表达来补偿。