Fuse N, Hirose S, Hayashi S
Graduate University for Advanced Studies, National Institute of Genetics, Shizuoka-Ken, Japan.
Genes Dev. 1994 Oct 1;8(19):2270-81. doi: 10.1101/gad.8.19.2270.
The Drosophila escargot (esg) gene encodes a C2-H2-type zinc finger protein that is expressed in the imaginal discs and histoblasts. In some esg mutants, the abdominal histoblasts become polyploid. It has therefore been suggested that the role of esg is to maintain diploidy of the imaginal cells. We show that esg encodes a DNA-binding protein with high affinity for G/ACAGGTG, the consensus-binding sequence for the basic helix-loop-helix (bHLH) family of transcription factors (E2 box). This DNA-binding activity is essential for esg function in vivo as the strong embryonic lethal allele esgVS8 is caused by an amino acid change within the zinc finger region, leading to reduced affinity for DNA. In cultured cells, a heterodimer of the bHLH proteins Scute and Daughterless activates transcription from promoters containing E2 boxes. The esg protein strongly inhibits this activation, suggesting that esg may regulate developmental processes dependent on bHLH proteins. In larvae, esg protein expressed by the heat shock promoter can rescue the polyploid phenotype of abdominal histoblasts, demonstrating that the phenotype is attributable to a loss of esg function. esg must be expressed continuously during the larval period for efficient rescue. Ectopic expression of esg in the salivary glands inhibits endoreplication of DNA. These results suggest that esg is involved in transcriptional inhibition of genes required for endoreplication.
果蝇的蜗牛基因(esg)编码一种C2-H2型锌指蛋白,该蛋白在成虫盘和组织干细胞中表达。在一些esg突变体中,腹部组织干细胞会变成多倍体。因此有人提出,esg的作用是维持成虫细胞的二倍体状态。我们发现,esg编码一种对G/ACAGGTG具有高亲和力的DNA结合蛋白,G/ACAGGTG是转录因子基本螺旋-环-螺旋(bHLH)家族(E2框)的共有结合序列。这种DNA结合活性对于esg在体内的功能至关重要,因为强胚胎致死等位基因esgVS8是由锌指区域内的氨基酸变化引起的,导致对DNA的亲和力降低。在培养细胞中,bHLH蛋白Scute和无女儿蛋白的异二聚体激活含有E2框的启动子的转录。esg蛋白强烈抑制这种激活,这表明esg可能调节依赖于bHLH蛋白的发育过程。在幼虫中,由热休克启动子表达的esg蛋白可以挽救腹部组织干细胞的多倍体表型,表明该表型归因于esg功能的丧失。为了实现有效的挽救,esg在幼虫期必须持续表达。esg在唾液腺中的异位表达会抑制DNA的核内复制。这些结果表明,esg参与了对核内复制所需基因的转录抑制。