Fielenbach Nicole, Guardavaccaro Daniele, Neubert Kerstin, Chan Tammy, Li Dongling, Feng Qin, Hutter Harald, Pagano Michele, Antebi Adam
Baylor College of Medicine, Huffington Center on Aging, Department of Molecular and Cellular Biology, One Baylor Plaza, Houston, TX 77030, USA.
Dev Cell. 2007 Mar;12(3):443-55. doi: 10.1016/j.devcel.2007.01.018.
During metazoan development, cells acquire both positional and temporal identities. The Caenorhabditis elegans heterochronic loci are global regulators of larval temporal fates. Most encode conserved transcriptional and translational factors, which affect stage-appropriate programs in various tissues. Here, we describe dre-1, a heterochronic gene, whose mutant phenotypes include precocious terminal differentiation of epidermal stem cells and altered temporal patterning of gonadal outgrowth. Genetic interactions with other heterochronic loci place dre-1 in the larval-to-adult switch. dre-1 encodes a highly conserved F box protein, suggesting a role in an SCF ubiquitin ligase complex. Accordingly, RNAi knockdown of the C. elegans SKP1-like homolog SKR-1, the cullin CUL-1, and ring finger RBX homologs yielded similar heterochronic phenotypes. DRE-1 and SKR-1 form a complex, as do the human orthologs, hFBXO11 and SKP1, revealing a phyletically ancient interaction. The identification of core components involved in SCF-mediated modification and/or proteolysis suggests an important level of regulation in the heterochronic hierarchy.
在后生动物发育过程中,细胞获得位置和时间身份。秀丽隐杆线虫异时性基因座是幼虫时间命运的全局调节因子。大多数编码保守的转录和翻译因子,它们影响各种组织中与阶段相适应的程序。在这里,我们描述了dre-1,一个异时性基因,其突变表型包括表皮干细胞的早熟终末分化和性腺生长的时间模式改变。与其他异时性基因座的遗传相互作用将dre-1置于幼虫到成虫的转变过程中。dre-1编码一种高度保守的F盒蛋白,提示其在SCF泛素连接酶复合体中发挥作用。相应地,对秀丽隐杆线虫SKP1样同源物SKR-1、cullin CUL-1和环指RBX同源物进行RNA干扰敲低,产生了相似的异时性表型。DRE-1和SKR-1形成复合体,人类直系同源物hFBXO11和SKP1也是如此,揭示了一种系统发育上古老 的相互作用。对参与SCF介导的修饰和/或蛋白水解的核心成分的鉴定表明,在异时性层级中存在一个重要的调节水平。