Fujita Masaki, Hawkinson Dana, King Kevin V, Hall David H, Sakamoto Hiroshi, Buechner Matthew
Department of Biology, Graduate School of Science and Technology, Kobe University, 1-1 Rokkodaicho, Nadaku, Kobe 657-8501, Japan.
Dev Biol. 2003 Apr 15;256(2):290-301. doi: 10.1016/s0012-1606(03)00040-x.
The exc mutations of Caenorhabditis elegans alter the position and shape of the apical cytoskeleton in polarized epithelial cells. Mutants in exc-7 form small cysts throughout the tubular excretory canals that regulate organismal osmolarity. We have cloned the exc-7 gene, the closest nematode homologue to the neural RNA-binding protein ELAV. EXC-7 is expressed in the canal for a short time midway through embryogenesis. Cysts in exc-7 mutants do not develop until several hours later, beginning at the time of hatching. We find that the first larval period is when the canal completes the majority of its outgrowth, and adds new apical cytoskeleton at a rapid rate. Ultrastructural studies show that exc-7 mutant defects resemble loss of beta(H)-spectrin (encoded by sma-1) at the distal ends of the excretory canals. In addition, exc-7 mutants exhibit synergistic excretory canal defects with mutations in sma-1, and EXC-7 binds sma-1 mRNA. These data imply that EXC-7 protein may affect expression of sma-1 and other genes to effect proper development of the excretory canals.
秀丽隐杆线虫的exc突变会改变极化上皮细胞中顶端细胞骨架的位置和形状。exc-7突变体在调节机体渗透压的管状排泄管中形成小囊肿。我们已经克隆了exc-7基因,它是与神经RNA结合蛋白ELAV最接近的线虫同源物。EXC-7在胚胎发育中期的短时间内在排泄管中表达。exc-7突变体中的囊肿直到孵化后几个小时才开始形成。我们发现第一幼虫期是排泄管完成大部分生长并快速添加新的顶端细胞骨架的时期。超微结构研究表明,exc-7突变体的缺陷类似于排泄管远端β(H)-血影蛋白(由sma-1编码)的缺失。此外,exc-7突变体与sma-1突变表现出协同的排泄管缺陷,并且EXC-7结合sma-1 mRNA。这些数据表明EXC-7蛋白可能影响sma-1和其他基因的表达,以影响排泄管的正常发育。