Vesque C, Maconochie M, Nonchev S, Ariza-McNaughton L, Kuroiwa A, Charnay P, Krumlauf R
Unité 368 de l'Institut National de la Santé et de la Recherche Médicale, Ecole Normale Supérieure, Paris, France.
EMBO J. 1996 Oct 1;15(19):5383-96.
Segmentation is a key feature of the development of the vertebrate hindbrain where it involves the generation of repetitive morphological units termed rhombomeres (r). Hox genes are likely to play an essential role in the specification of segmental identity and we have been investigating their regulation. We show here that the mouse and chicken Hoxb-2 genes are dependent for their expression in r3 and r5 on homologous enhancer elements and on binding to this enhancer of the r3/r5-specific transcriptional activator Krox-20. Among the three Krox-20 binding sites of the mouse Hoxb-2 enhancer, only the high-affinity site is absolutely necessary for activity. In contrast, we have identified an additional cis-acting element, Box1, essential for r3/r5 enhancer activity. It is conserved both in sequence and in position respective to the high-affinity Krox-20 binding site within the mouse and chicken enhancers. Furthermore, a short 44 bp sequence spanning the Box1 and Krox-20 sites can act as an r3/r5 enhancer when oligomerized. Box1 may therefore constitute a recognition sequence for another factor cooperating with Krox-20. Taken together, these data demonstrate the conservation of Hox gene regulation and of Krox-20 function during vertebrate evolution.
体节形成是脊椎动物后脑发育的一个关键特征,在此过程中会产生被称为菱脑节(r)的重复性形态学单位。Hox基因可能在体节身份的特化中发挥重要作用,我们一直在研究它们的调控机制。我们在此表明,小鼠和鸡的Hoxb - 2基因在r3和r5中的表达依赖于同源增强子元件以及与r3/r5特异性转录激活因子Krox - 20对该增强子的结合。在小鼠Hoxb - 2增强子的三个Krox - 20结合位点中,只有高亲和力位点对于活性是绝对必需的。相比之下,我们鉴定出了另一个顺式作用元件Box1,它对于r3/r5增强子活性至关重要。在小鼠和鸡的增强子中,其在序列和相对于高亲和力Krox - 20结合位点的位置上都是保守的。此外,一段跨越Box1和Krox - 20位点的44 bp短序列在寡聚化时可作为r3/r5增强子。因此,Box1可能构成与Krox - 20协同作用的另一个因子的识别序列。综上所述,这些数据证明了在脊椎动物进化过程中Hox基因调控和Krox - 20功能的保守性。