Lai E C, Burks C, Posakony J W
Department of Biology and Center for Molecular Genetics, University of California San Diego, La Jolla, CA 92093-0349, USA.
Development. 1998 Oct;125(20):4077-88. doi: 10.1242/dev.125.20.4077.
Cell-cell interactions mediated by the Notch receptor play an essential role in the development of the Drosophila adult peripheral nervous system (PNS). Transcriptional activation of multiple genes of the Enhancer of split Complex [E(spl)-C] is a key intracellular response to Notch receptor activity. Here we report that most E(spl)-C genes contain a novel sequence motif, the K box (TGTGAT), in their 3' untranslated regions (3' UTRs). We present three lines of evidence that demonstrate the importance of this element in the post-transcriptional regulation of E(spl)-C genes. First, K box sequences are specifically conserved in the orthologs of two structurally distinct E(spl)-C genes (m4 and m8) from a distantly related Drosophila species. Second, the wild-type m8 3' UTR strongly reduces accumulation of heterologous transcripts in vivo, an activity that requires its K box sequences. Finally, m8 genomic DNA transgenes lacking these motifs cause mild gain-of-function PNS defects and can partially phenocopy the genetic interaction of E(spl)D with Notchspl. Although E(spl)-C genes are expressed in temporally and spatially specific patterns, we find that K box-mediated regulation is ubiquitous, implying that other targets of this activity may exist. In support of this, we present sequence analyses that implicate genes of the iroquois Complex (Iro-C) and engrailed as additional targets of K box-mediated regulation.
由Notch受体介导的细胞间相互作用在果蝇成虫外周神经系统(PNS)的发育中起着至关重要的作用。分裂增强子复合体[E(spl)-C]的多个基因的转录激活是对Notch受体活性的关键细胞内反应。在此,我们报告大多数E(spl)-C基因在其3'非翻译区(3'UTR)中含有一个新的序列基序,即K盒(TGTGAT)。我们提供了三条证据,证明该元件在E(spl)-C基因的转录后调控中的重要性。首先,K盒序列在来自远缘果蝇物种的两个结构不同的E(spl)-C基因(m4和m8)的直系同源物中特异性保守。其次,野生型m8 3'UTR在体内强烈降低异源转录本的积累,这种活性需要其K盒序列。最后,缺乏这些基序的m8基因组DNA转基因会导致轻度的功能获得性PNS缺陷,并且可以部分模拟E(spl)D与Notchspl的遗传相互作用。尽管E(spl)-C基因以时间和空间特异性模式表达,但我们发现K盒介导的调控是普遍存在的,这意味着可能存在该活性的其他靶标。为此,我们进行了序列分析,表明印第安复合基因(Iro-C)和engrailed的基因是K盒介导调控的其他靶标。