Song Mi Hye, Huang Françoise Z, Gonsalves Foster C, Weisblat David A
Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720-3200, USA.
Dev Biol. 2004 May 1;269(1):183-95. doi: 10.1016/j.ydbio.2004.01.025.
We have cloned genes related to hairy and Enhancer of split (hes) from glossiphoniid leeches, Helobdella robusta and Theromyzon rude. In leech, segments arise sequentially in anteroposterior progression from a posterior growth zone that consists of five bilaterally paired embryonic stem cells called teloblasts. Each teloblast gives rise to segmental founder cells (primary blast cells) that contribute iterated sets of definitive progeny in each segment. Thus, in leech, the "segmentation clock," is closely identified with the cell cycle clock of the teloblasts. We have characterized normal expression patterns of mRNA and protein for the H. robusta hes-class gene (Hro-hes). Semiquantitative RT-PCR revealed that Hro-hes mRNA levels peak while the teloblasts are actively producing primary blast cells. RT-PCR, in situ hybridization and immunostaining revealed that Hro-hes is expressed as early as the first zygotic mitosis and throughout early development. Hro-hes is expressed in macromeres, pro-teloblasts, teloblasts and primary blast cells. HRO-HES protein is localized in the nuclei of cells expressing HRO-HES during interphase; nuclear HRO-HES is reduced during mitosis. In contrast, Hro-hes is transcribed during mitosis and its transcripts are associated with mitotic apparatus (MA). Thus, Hro-hes transcription cycles in antiphase to the nuclear localization of HRO-HES protein. These results indicate that Hro-hes expression, and thus possibly its biological activity, is linked to the cell cycle.
我们已经从舌蛭科水蛭(强壮舌蛭和粗尾蛭)中克隆了与毛状和分裂增强子(hes)相关的基因。在水蛭中,体节从后生长区按前后顺序依次产生,后生长区由五个双侧配对的胚胎干细胞(称为端细胞)组成。每个端细胞产生节段性的奠基细胞(原胚细胞),这些细胞在每个体节中产生一系列确定的后代。因此,在水蛭中,“体节时钟”与端细胞的细胞周期时钟密切相关。我们已经对强壮舌蛭hes类基因(Hro-hes)的mRNA和蛋白质的正常表达模式进行了表征。半定量RT-PCR显示,当端细胞活跃地产生原胚细胞时,Hro-hes mRNA水平达到峰值。RT-PCR、原位杂交和免疫染色显示,Hro-hes早在第一次合子有丝分裂时就开始表达,并贯穿早期发育过程。Hro-hes在大卵裂球、前体端细胞、端细胞和原胚细胞中表达。HRO-HES蛋白在间期定位于表达HRO-HES的细胞核中;有丝分裂期间细胞核中的HRO-HES减少。相反,Hro-hes在有丝分裂期间转录,其转录本与有丝分裂器(MA)相关。因此,Hro-hes转录与HRO-HES蛋白的核定位呈反相循环。这些结果表明,Hro-hes的表达及其可能的生物学活性与细胞周期有关。