Wilk Ronit, Pickup Amanda T, Hamilton Jill K, Reed Bruce H, Lipshitz Howard D
Program in Developmental Biology, Research Institute, The Hospital for Sick Children, Toronto, Ontario, Canada.
Genetics. 2004 Sep;168(1):281-300. doi: 10.1534/genetics.104.031344.
The nuclear zinc-finger protein encoded by the hindsight (hnt) locus regulates several cellular processes in Drosophila epithelia, including the Jun N-terminal kinase (JNK) signaling pathway and actin polymerization. Defects in these molecular pathways may underlie the abnormal cellular interactions, loss of epithelial integrity, and apoptosis that occurs in hnt mutants, in turn causing failure of morphogenetic processes such as germ band retraction and dorsal closure in the embryo. To define the genetic pathways regulated by hnt, 124 deficiencies on the second and third chromosomes and 14 duplications on the second chromosome were assayed for dose-sensitive modification of a temperature-sensitive rough eye phenotype caused by the viable allele, hntpeb; 29 interacting regions were identified. Subsequently, 438 P-element-induced lethal mutations mapping to these regions and 12 candidate genes were tested for genetic interaction, leading to identification of 63 dominant modifier loci. A subset of the identified mutants also dominantly modify hnt308-induced embryonic lethality and thus represent general rather than tissue-specific interactors. General interactors include loci encoding transcription factors, actin-binding proteins, signal transduction proteins, and components of the extracellular matrix. Expression of several interactors was assessed in hnt mutant tissue. Five genes--apontic (apt), Delta (Dl), decapentaplegic (dpp), karst (kst), and puckered (puc)--are regulated tissue autonomously and, thus, may be direct transcriptional targets of HNT. Three of these genes--apt, Dl, and dpp--are also regulated nonautonomously in adjacent non-HNT-expressing tissues. The expression of several additional interactors--viking (vkg), Cg25, and laminin-alpha (LanA)-is affected only in a nonautonomous manner.
由“后见之明”(hnt)基因座编码的核锌指蛋白调节果蝇上皮细胞中的多种细胞过程,包括Jun N端激酶(JNK)信号通路和肌动蛋白聚合。这些分子途径的缺陷可能是hnt突变体中发生的异常细胞相互作用、上皮完整性丧失和细胞凋亡的基础,进而导致胚胎中形态发生过程如胚带退缩和背闭合失败。为了确定受hnt调节的遗传途径,检测了第二和第三条染色体上的124个缺失以及第二条染色体上的14个重复对由存活等位基因hntpeb引起的温度敏感粗糙眼表型的剂量敏感修饰;鉴定出29个相互作用区域。随后,对定位到这些区域的438个P元素诱导的致死突变和12个候选基因进行了遗传相互作用测试,从而鉴定出63个显性修饰基因座。所鉴定突变体的一个子集也显性修饰hnt308诱导的胚胎致死性,因此代表一般而非组织特异性的相互作用因子。一般相互作用因子包括编码转录因子、肌动蛋白结合蛋白、信号转导蛋白和细胞外基质成分的基因座。在hnt突变组织中评估了几种相互作用因子的表达。五个基因——无触角(apt)、Delta(Dl)、十五体瘫(dpp)、岩溶(kst)和褶皱(puc)——在组织中自主调节,因此可能是HNT的直接转录靶标。其中三个基因——apt、Dl和dpp——在相邻的非HNT表达组织中也受到非自主调节。几种其他相互作用因子——维京(vkg)、Cg25和层粘连蛋白α(LanA)——的表达仅以非自主方式受到影响。