Raftery L A, Twombly V, Wharton K, Gelbart W M
Cutaneous Biology Research Center, Massachusetts General Hospital, Charlestown 02129.
Genetics. 1995 Jan;139(1):241-54. doi: 10.1093/genetics/139.1.241.
Pathways for regulation of signaling by transforming growth factor-beta family members are poorly understood at present. The best genetically characterized member of this family is encoded by the Drosophila gene decapentaplegic (dpp), which is required for multiple events during fly development. We describe here the results of screens for genes required to maximize dpp signaling during embryonic dorsal-ventral patterning. Screens for genetic interactions in the zygote have identified an allele of tolloid, as well as two novel alleles of screw, a gene recently shown to encode another bone morphogenetic protein-like polypeptide. Both genes are required for patterning the dorsalmost tissues of the embryo. Screens for dpp interactions with maternally expressed genes have identified loss of function mutations in Mothers against dpp and Medea. These mutations are homozygous pupal lethal, engendering gut defects and severely reduced imaginal disks, reminiscent of dpp mutant phenotypes arising during other dpp-dependent developmental events. Genetic interaction phenotypes are consistent with reduction of dpp activity in the early embryo and in the imaginal disks. We propose that the novel screw mutations identified here titrate out some component(s) of the dpp signaling pathway. We propose that Mad and Medea encode rate-limiting components integral to dpp pathways throughout development.
目前,人们对转化生长因子-β家族成员信号调控途径的了解还很少。该家族中遗传学特征研究得最清楚的成员由果蝇基因“截瘫”(dpp)编码,果蝇发育过程中的多个事件都需要它。我们在此描述了在胚胎背腹模式形成过程中,为使dpp信号最大化而对所需基因进行筛选的结果。对合子中基因相互作用的筛选确定了类 tolloid 基因的一个等位基因,以及 screw 基因的两个新等位基因,screw 基因最近被证明编码另一种骨形态发生蛋白样多肽。这两个基因都是胚胎最背侧组织模式形成所必需的。对dpp与母源表达基因相互作用的筛选确定了“抗dpp母亲”基因和“美狄亚”基因的功能缺失突变。这些突变是纯合蛹期致死的,会导致肠道缺陷并严重减少成虫盘,这让人想起在其他dpp依赖的发育事件中出现的dpp突变体表型。基因相互作用表型与早期胚胎和成虫盘中dpp活性降低一致。我们提出,这里鉴定出的新的screw突变消除了dpp信号通路的某些成分。我们提出,Mad和Medea编码整个发育过程中dpp信号通路不可或缺的限速成分。