Pelegri F, Lehmann R
Whitehead Institute, Howard Hughes Medical Institute, Cambridge, Massachusetts.
Genetics. 1994 Apr;136(4):1341-53. doi: 10.1093/genetics/136.4.1341.
Anteroposterior polarity of the Drosophila embryo is initiated by the localized activities of the maternal genes, bicoid and nanos, which establish a gradient of the hunchback (hb) morphogen. nanos determines the distribution of the maternal Hb protein by regulating its translation. To identify further components of this pathway we isolated suppressors of nanos. In the absence of nanos high levels of Hb protein repress the abdomen-specific genes knirps and giant. In suppressor-of-nanos mutants, knirps and giant are expressed in spite of high Hb levels. The suppressors are alleles of Enhancer of zeste (E(z)) a member of the Polycomb group (Pc-G) of genes. We show that E(z), and likely other Pc-G genes, are required for maintaining the expression domains of knirps and giant initiated by the maternal Hb protein gradient. We have identified a small region of the knirps promoter that mediates the regulation by E(z) and hb. Because Pc-G genes are thought to control gene expression by regulating chromatin, we propose that imprinting at the chromatin level underlies the determination of anteroposterior polarity in the early embryo.
果蝇胚胎的前后极性由母体基因bicoid和nanos的局部活性启动,这两种基因建立了驼背(hb)形态发生素的梯度。nanos通过调节其翻译来决定母体Hb蛋白的分布。为了进一步鉴定该途径的其他成分,我们分离了nanos的抑制子。在没有nanos的情况下,高水平的Hb蛋白会抑制腹部特异性基因knirps和giant。在nanos抑制子突变体中,尽管Hb水平很高,knirps和giant仍会表达。这些抑制子是zeste增强子(E(z))的等位基因,E(z)是多梳基因家族(Pc-G)的成员之一。我们表明,E(z)以及可能的其他Pc-G基因,对于维持由母体Hb蛋白梯度启动的knirps和giant的表达域是必需的。我们已经确定了knirps启动子的一个小区域,该区域介导了E(z)和hb的调控。由于Pc-G基因被认为通过调节染色质来控制基因表达,我们提出染色质水平的印记是早期胚胎前后极性确定的基础。