Leimeister C, Dale K, Fischer A, Klamt B, Hrabe de Angelis M, Radtke F, McGrew M J, Pourquié O, Gessler M
Institute of Physiological Chemistry I, Theodor-Boveri-Institute (Biocenter), University of Wuerzburg, Am Hubland, Wuerzburg, D-97074, Germany.
Dev Biol. 2000 Nov 1;227(1):91-103. doi: 10.1006/dbio.2000.9884.
Vertebrate somitogenesis comprises the generation of a temporal periodicity, the establishment of anteroposterior compartment identity, and the translation of the temporal periodicity into the metameric pattern of somites. Molecular players at each of these steps are beginning to be identified. Especially, members of the Notch signaling cascade appear to be involved in setting up the somitogenesis clock and subsequent events. We had previously demonstrated specific expression of the mHey1 and mHey2 basic helix-loop-helix (bHLH) factors during somitogenesis. Here we show that perturbed Notch signaling in Dll1 and Notch1 knockout mutants affects this expression in the presomitic mesoderm (PSM) and the somites. In the caudal PSM, however, mHey2 expression is maintained and thus is likely to be independent of Notch signaling. Furthermore, we analysed the dynamic expression of the respective chicken c-Hey1 and c-Hey2 genes during somitogenesis. Not only is c-Hey2 rhythmically expressed across the chicken presomitic mesoderm like c-hairy1, but its transcription is similarly independent of de novo protein synthesis. In contrast, the dynamic expression of c-Hey1 is restricted to the anterior segmental plate. Both c-Hey genes are coexpressed with c-hairy1 in the posterior somite half. Further in vitro and in vivo interaction assays demonstrated direct homo- and heterodimerisation between these hairy-related bHLH proteins, suggesting a combinatorial action in both the generation of a temporal periodicity and the anterior-posterior somite compartmentalisation.
脊椎动物的体节发生包括产生时间周期性、建立前后节段身份以及将时间周期性转化为体节的分节模式。这些步骤中每一步的分子参与者都开始被识别出来。特别是,Notch信号级联的成员似乎参与了体节发生时钟的建立及后续事件。我们之前已经证明了mHey1和mHey2碱性螺旋-环-螺旋(bHLH)因子在体节发生过程中的特异性表达。在此我们表明,Dll1和Notch1基因敲除突变体中Notch信号的扰动会影响前体中胚层(PSM)和体节中的这种表达。然而,在尾侧PSM中,mHey2的表达得以维持,因此可能独立于Notch信号。此外,我们分析了鸡的c-Hey1和c-Hey2基因在体节发生过程中的动态表达。不仅c-Hey2像c-hairy1一样在前体中胚层中呈节律性表达,而且其转录同样独立于从头蛋白质合成。相比之下,c-Hey1的动态表达局限于前节段板。这两个c-Hey基因在体节后半部分与c-hairy1共表达。进一步的体外和体内相互作用分析表明,这些与hairy相关的bHLH蛋白之间存在直接的同源和异源二聚化,这表明它们在产生时间周期性和前后体节分区过程中具有组合作用。