Gao J, Estrada L, Cho S, Ellis R E, Gorski J L
Department of Pediatrics and Communicable Diseases, University of Michigan School of Medicine, Ann Arbor, MI 48109, USA.
Hum Mol Genet. 2001 Dec 15;10(26):3049-62. doi: 10.1093/hmg/10.26.3049.
FGD1 mutations result in faciogenital dysplasia, an X-linked human disease that affects skeletogenesis. FGD1 encodes a guanine nucleotide exchange factor (GEF) that specifically activates the Rho GTPase Cdc42. To gain insight into the function of FGD1, we have isolated and characterized fgd-1, the Caenorhabditis elegans homolog of the human FGD1 gene. Comparative sequence analyses show that fgd-1 and FGD1 share a similar structural organization and a high degree of sequence identity throughout shared signaling domains. In nematodes, interference with fgd-1 expression results in excretory cell abnormalities and cystic dilation of the excretory cell canals. Molecular lesions associated with two exc-5 alleles affect the fgd-1 gene, and fgd-1 transgenic expression rescues the Exc-5 phenotype. Together, these data confirm that the fgd-1 transcript corresponds to the exc-5 gene. Transgenic expression studies show that fgd-1 has a limited pattern of expression that is confined to the excretory cell during development, a finding that suggests that the C.elegans FGD-1 protein might function in a cell autonomous manner. Serial observations indicate that fgd-1 mutations lead to developmental excretory cell abnormalities that cause cystic dilation and interfere with canal process extension. Based on these data, we conclude that fgd-1 is the C.elegans homolog of the human FGD1 gene, a new member of the FGD1-related family of RhoGEF genes, and that fgd-1 plays a critical role in excretory cell morphogenesis and cellular organization.
FGD1 突变会导致面生殖器发育异常,这是一种影响骨骼生成的 X 连锁人类疾病。FGD1 编码一种鸟嘌呤核苷酸交换因子(GEF),该因子特异性激活 Rho GTP 酶 Cdc42。为深入了解 FGD1 的功能,我们分离并鉴定了 fgd-1,它是人类 FGD1 基因在秀丽隐杆线虫中的同源物。比较序列分析表明,fgd-1 和 FGD1 在整个共享信号域中具有相似的结构组织和高度的序列同一性。在秀丽隐杆线虫中,干扰 fgd-1 的表达会导致排泄细胞异常以及排泄细胞管的囊性扩张。与两个 exc-5 等位基因相关的分子损伤影响 fgd-1 基因,并且 fgd-1 转基因表达可挽救 Exc-5 表型。这些数据共同证实 fgd-1 转录本对应于 exc-5 基因。转基因表达研究表明,fgd-1 的表达模式有限,在发育过程中局限于排泄细胞,这一发现表明秀丽隐杆线虫的 FGD-1 蛋白可能以细胞自主方式发挥作用。连续观察表明,fgd-1 突变会导致发育性排泄细胞异常,从而引起囊性扩张并干扰管过程延伸。基于这些数据,我们得出结论,fgd-1 是人类 FGD1 基因在秀丽隐杆线虫中的同源物,是 RhoGEF 基因中 FGD1 相关家族的新成员,并且 fgd-1 在排泄细胞形态发生和细胞组织中起关键作用。