Wang S, Kimble J
Department of Biochemistry, University of Wisconsin-Madison and Howard Hughes Medical Institute, 53706-1544, USA.
EMBO J. 2001 Mar 15;20(6):1363-72. doi: 10.1093/emboj/20.6.1363.
The tra-1 and tra-2 sex-determining genes promote female fates in Caenorhabditis elegans. Classical genetic studies placed tra-1 as the terminal regulator of the pathway with tra-2 acting upstream as a regulator of regulators of tra-1. Here we report the surprising result that the TRA-1 transcription factor binds the intracellular domain of the TRA-2 membrane protein. This binding is dependent on the MX regulatory domain, a region of the TRA-2 intracellular domain shown previously to be critical for the onset of hermaphrodite spermatogenesis. The functional importance of the TRA-1-TRA-2 physical interaction is supported by genetic interactions between tra-1(0) and tra-2(mx) mutations: a reduction of tra-1 gene dose from two copies to one copy enhances the tra-2(mx) feminization phenotype, but has no apparent somatic effect. In Caenorhabditis briggsae, we also find an MX-dependent interaction between Cb-TRA-1 and Cb-TRA-2, but intriguingly, no cross-species interactions are seen. The conservation of the TRA-1- TRA-2 interaction underscores its importance in sex determination.
tra-1和tra-2性别决定基因促进秀丽隐杆线虫的雌性发育命运。经典遗传学研究表明,tra-1是该信号通路的终端调节因子,而tra-2则在上游作为tra-1调节因子的调节因子发挥作用。在此,我们报告了一个惊人的结果:TRA-1转录因子与TRA-2膜蛋白的胞内结构域结合。这种结合依赖于MX调节结构域,该结构域是TRA-2胞内结构域的一个区域,先前已证明其对雌雄同体精子发生的起始至关重要。tra-1(0)和tra-2(mx)突变之间的遗传相互作用支持了TRA-1与TRA-2物理相互作用的功能重要性:tra-1基因剂量从两个拷贝减少到一个拷贝会增强tra-2(mx)的雌性化表型,但对体细胞没有明显影响。在briggsae秀丽隐杆线虫中,我们也发现Cb-TRA-1和Cb-TRA-2之间存在依赖于MX的相互作用,但有趣的是,未观察到跨物种相互作用。TRA-1与TRA-2相互作用的保守性突出了其在性别决定中的重要性。