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果蝇基因“大胡子”编码一种新型小蛋白,并与多个分裂增强子复合体基因共享3'UTR序列基序。

The Drosophila gene Bearded encodes a novel small protein and shares 3' UTR sequence motifs with multiple Enhancer of split complex genes.

作者信息

Leviten M W, Lai E C, Posakony J W

机构信息

Department of Biology and Center for Molecular Genetics, University of California San Diego, La Jolla 92093-0349, USA.

出版信息

Development. 1997 Oct;124(20):4039-51. doi: 10.1242/dev.124.20.4039.

Abstract

Gain-of-function alleles of the Drosophila gene Bearded (Brd) cause sensory organ multiplication and loss phenotypes indistinguishable at the cellular level from those caused by loss-of-function mutations in the genes of the Notch pathway (Leviten, M. W. and Posakony, J. W. (1996). Dev. Biol. 176, 264-283). We have carried out a molecular analysis of the structure and expression of both wild-type and mutant Brd transcription units. We find that the Brd transcript is truncated and accumulates to substantially higher levels in the gain-of-function mutants, due to the insertion of a transposable element of the blood family in the Brd 3' untranslated region (UTR). The wild-type Brd 3' UTR includes three copies of a 9-nucleotide sequence (CAGCTTTAA) that we refer to as the 'Brd box'. Moreover, the 3' UTRs of Brd and of the m4 transcription unit of the Enhancer of split gene complex [E(spl)-C] exhibit an unusually high degree of sequence identity that includes not only Brd box sequences but also a second motif we refer to as the 'GY box' (GTCTTCC). We find that both the Brd box and the GY box are also present in the 3' UTRs of several basic helix-loop-helix repressor-encoding genes of the E(spl)-C, often in multiple copies, suggesting that a novel mode of post-transcriptional regulation applies to Brd and many E(spl)-C genes. The fact that the more abundant Brd mutant mRNA lacks the GY box and two of the Brd boxes present in wild-type Brd mRNA suggests that either or both of these elements may confer instability on transcripts that contain them. Finally, we find that Brd encodes a novel small protein of only 81 amino acids that is predicted to include a basic amphipathic alpha-helix. The deduced Brd protein shows sequence similarity to the E(spl)m4 protein, which is likewise expected to include a basic amphipathic alpha-helix, suggesting that the two proteins have related biochemical functions.

摘要

果蝇基因“有须的”(Brd)的功能获得性等位基因会导致感觉器官增殖和缺失表型,在细胞水平上与Notch信号通路基因功能缺失突变所导致的表型无法区分(莱维滕,M. W.和波萨科尼,J. W.(1996年)。《发育生物学》176卷,264 - 283页)。我们对野生型和突变型Brd转录单位的结构与表达进行了分子分析。我们发现,由于血液家族的一个转座元件插入到Brd 3'非翻译区(UTR),Brd转录本在功能获得性突变体中被截断并积累到显著更高的水平。野生型Brd 3' UTR包含一个9核苷酸序列(CAGCTTTAA)的三个拷贝,我们将其称为“Brd框”。此外,Brd和分裂增强子基因复合体[m4转录单位(E(spl)-C)]的3' UTR表现出异常高的序列同一性,不仅包括Brd框序列,还包括我们称为“GY框”(GTCTTCC)的第二个基序。我们发现,Brd框和GY框也存在于E(spl)-C的几个编码碱性螺旋-环-螺旋阻遏蛋白的基因的3' UTR中,通常有多个拷贝,这表明一种新的转录后调控模式适用于Brd和许多E(spl)-C基因。更丰富的Brd突变型mRNA缺乏野生型Brd mRNA中存在的GY框和两个Brd框,这一事实表明这些元件中的一个或两个可能会使包含它们的转录本不稳定。最后,我们发现Brd编码一种仅81个氨基酸的新型小蛋白,预计包含一个碱性两亲性α螺旋。推导的Brd蛋白与E(spl)m4蛋白显示出序列相似性,E(spl)m4蛋白同样预计包含一个碱性两亲性α螺旋,这表明这两种蛋白具有相关的生化功能。

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