Kuwabara P E, Okkema P G, Kimble J
Department of Biochemistry, College of Agriculture and Life Sciences, Graduate School, University of Wisconsin-Madison 53706.
Mol Biol Cell. 1992 Apr;3(4):461-73. doi: 10.1091/mbc.3.4.461.
The Caenorhabditis elegans sex-determining gene, tra-2, promotes female development in XX animals. In this paper we report the cDNA sequence corresponding to a 4.7 kb tra-2 mRNA and show that it is composed of 23 exons, is trans-spliced to SL2, and contains a perfect direct repeat in the 3' untranslated region. This mRNA is predicted to encode a 1475 amino acid protein, named pTra2A, that has a secretory signal and several potential membrane-spanning domains. The molecular analysis of tra-2 loss-of-function mutations supports our open reading frame identification and suggests that the carboxy-terminal domain is important for tra-2 activity. We propose that in XX animals the carboxy-terminal domain of pTra2A negatively regulates the downstream male promoting fem genes. In XO animals, tra-2 is negatively regulated by her-1, which acts cell nonautonomously. Because hydropathy predictions suggest that pTra2A is an integral membrane protein, pTra2A might act as a receptor for the her-1 protein. We propose that in XO animals, the her-1 protein promotes male development by binding and inactivating pTra2A. The role of cell communication in C. elegans sex determination might be to ensure unified sexual development throughout the animal. If so, then regulation of sexual fate by her-1 and tra-2 might provide a general model for the coordination of groups of cells to follow a single cell fate.
秀丽隐杆线虫的性别决定基因tra-2在XX动物中促进雌性发育。在本文中,我们报道了与4.7 kb tra-2 mRNA相对应的cDNA序列,表明它由23个外显子组成,经反式剪接与SL2相连,并且在3'非翻译区含有一个完美的正向重复序列。该mRNA预计编码一个1475个氨基酸的蛋白质,命名为pTra2A,它具有一个分泌信号和几个潜在的跨膜结构域。对tra-2功能缺失突变的分子分析支持了我们对开放阅读框的鉴定,并表明羧基末端结构域对tra-2活性很重要。我们提出,在XX动物中,pTra2A的羧基末端结构域负向调节下游促进雄性发育的fem基因。在XO动物中,tra-2受her-1负向调节,her-1以非细胞自主方式起作用。由于亲水性预测表明pTra2A是一种整合膜蛋白,pTra2A可能作为her-1蛋白的受体。我们提出,在XO动物中,her-1蛋白通过结合并使pTra2A失活来促进雄性发育。细胞通讯在秀丽隐杆线虫性别决定中的作用可能是确保整个动物体内性发育的统一。如果是这样,那么her-1和tra-2对性命运的调节可能为协调细胞群以遵循单一细胞命运提供一个通用模型。