Begley D, Murphy A M, Hiu C, Tsubota S I
Department of Biology, University of Michigan, Ann Arbor 48109, USA.
Mol Gen Genet. 1995 Jul 22;248(1):69-78. doi: 10.1007/BF02456615.
Modifier of rudimentaryp1 (mod(r)p1) is a hybrid dysgenesis-induced mutation isolated as a suppressor of rhd1, a hypomorphic rudimentary(r) allele in Drosophila melanogaster.mod(r)p1 has opposite effects on two of the rudimentary mutant phenotypes. It suppresses the wing truncation associated with hypomorphic r alleles, which was the phenotype used to isolate it. On the other hand, it does not suppress the sterility of r females and in fact decreases the fertility of wild-type females. This infertility is associated with a drastic decrease in r expression in mod(r)p1 females. P elementagging was used to clone the mutant allele, mod(r)p1. Subsequently, 28 kb of genomic DNA encompassing the wild-type mod(r) gene in the chromosomal region 1B was cloned. mod(r) encodes a 1.3 kb transcript which is not detected in the mod(r)p1 mutant. The sequences of mod(r) cDNA clones reveal that the gene encodes a protein of 200 amino acids in length. When compared to sequences in GenBank, the amino acid sequence did not reveal any long sequences similarities. However, the structure of the protein reveals similarities to known transcription factors. The N-terminal half of the protein is very acidic, whereas the C-terminal half is basic. The basic domain suggests a possible DNA-binding domain, while the acidic domain suggests a transcriptional activation domain. Consistent with this possibility is the fact that mod(r) acts through the 5' control region of the rudimentary gene to control its expression.
原始型p1修饰基因(mod(r)p1)是一种由杂种不育诱导产生的突变基因,作为黑腹果蝇中低表达原始型(r)等位基因rhd1的抑制子被分离出来。mod(r)p1对原始型突变体的两种表型具有相反的作用。它抑制与低表达r等位基因相关的翅截断,而这正是用于分离它的表型。另一方面,它不抑制r雌性的不育,实际上还会降低野生型雌性的生育力。这种不育与mod(r)p1雌性中r表达的急剧下降有关。利用P因子标签法克隆了突变等位基因mod(r)p1。随后,克隆了包含染色体区域1B中野生型mod(r)基因的28 kb基因组DNA。mod(r)编码一个1.3 kb的转录本,在mod(r)p1突变体中未检测到。mod(r) cDNA克隆的序列显示该基因编码一个长度为200个氨基酸的蛋白质。与GenBank中的序列相比,氨基酸序列未显示出任何长序列相似性。然而,该蛋白质的结构显示出与已知转录因子的相似性。该蛋白质的N端一半非常酸性,而C端一半是碱性的。碱性结构域提示可能存在一个DNA结合结构域,而酸性结构域提示可能存在一个转录激活结构域。与这种可能性一致的是,mod(r)通过原始型基因的5'控制区来控制其表达。