Wang Shenqiu, Jayaram Satish Arcot, Hemphälä Johanna, Senti Kirsten-André, Tsarouhas Vasilios, Jin Haining, Samakovlis Christos
Department of Developmental Biology, Wenner-Gren Institute, Stockholm University, Arrhenius Labs E3, S-10691 Stockholm, Sweden.
Curr Biol. 2006 Jan 24;16(2):180-5. doi: 10.1016/j.cub.2005.11.074.
The function of tubular epithelial organs like the kidney and lung is critically dependent on the length and diameter of their constituting branches. Genetic analysis of tube size control during Drosophila tracheal development has revealed that epithelial septate junction (SJ) components and the dynamic chitinous luminal matrix coordinate tube growth. However, the underlying molecular mechanisms controlling tube expansion so far remained elusive. Here, we present the analysis of two luminal chitin binding proteins with predicted polysaccharide deacetylase activities (ChLDs). ChLDs are required to assemble the cable-like extracellular matrix (ECM) and restrict tracheal tube elongation. Overexpression of native, but not of mutated, ChLD versions also interferes with the structural integrity of the intraluminal ECM and causes aberrant tube elongation. Whereas ChLD mutants have normal SJ structure and function, the luminal deposition of the ChLD requires intact cellular SJs. This identifies a new molecular function for SJs in the apical secretion of ChLD and positions ChLD downstream of the SJs in tube length control. The deposition of the chitin luminal matrix first promotes and coordinates radial tube expansion. We propose that the subsequent structural modification of chitin by chitin binding deacetylases selectively instructs the termination of tube elongation to the underlying epithelium.
像肾脏和肺这样的管状上皮器官的功能严重依赖于其组成分支的长度和直径。对果蝇气管发育过程中管大小控制的遗传分析表明,上皮分隔连接(SJ)成分和动态的几丁质腔基质协调管的生长。然而,迄今为止,控制管扩张的潜在分子机制仍然难以捉摸。在这里,我们展示了对两种具有预测的多糖脱乙酰酶活性的腔几丁质结合蛋白(ChLDs)的分析。ChLDs是组装索状细胞外基质(ECM)和限制气管管伸长所必需的。天然ChLD版本而非突变版本的过表达也会干扰腔内ECM的结构完整性并导致异常的管伸长。虽然ChLD突变体具有正常的SJ结构和功能,但ChLD的腔沉积需要完整的细胞SJ。这确定了SJ在ChLD顶端分泌中的新分子功能,并将ChLD定位在管长度控制中SJ的下游。几丁质腔基质的沉积首先促进并协调管的径向扩张。我们提出,随后几丁质结合脱乙酰酶对几丁质的结构修饰选择性地指示基础上皮细胞终止管的伸长。