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82F晚期膨出包含L82基因,这是一个新基因家族的重要成员。

The 82F late puff contains the L82 gene, an essential member of a novel gene family.

作者信息

Stowers R S, Russell S, Garza D

机构信息

Department of Biochemistry, Stanford University School of Medicine, Stanford, California 94305, USA.

出版信息

Dev Biol. 1999 Sep 1;213(1):116-30. doi: 10.1006/dbio.1999.9358.

Abstract

Metamorphosis in Drosophila results from a hierarchy of ecdysone-induced gene expression initiated at the end of the third larval instar. A now classical model of this hierarchy was proposed based on observations of the activity of polytene chromosome "puffs" which distinguished "early" puffs as those directly induced by ecdysone and "late" puffs as those which become active as a secondary response to the hormone. We report here the isolation and characterization of the L82 gene corresponding to the extensively characterized late puff at 82F. L82 is a complex gene that spans at least 50 kb of genomic DNA, produces at least seven different nested mRNAs, and has homology to a novel gene family. In contrast to most previously characterized puff genes, the broad developmental expression pattern of L82 suggests that it is controlled by both ecdysone-dependent and ecdysone-independent regulatory mechanisms. L82 mutations were identified by transgene rescue of developmental delay and eclosion lethal phenotypes.

摘要

果蝇的变态发育源于在第三龄幼虫末期启动的蜕皮激素诱导基因表达的层级调控。基于对多线染色体“胀泡”活性的观察,提出了一个关于此层级调控的经典模型,该模型将“早期”胀泡定义为由蜕皮激素直接诱导的胀泡,而“晚期”胀泡则是作为对该激素的次级反应而变得活跃的胀泡。我们在此报告对应于82F处广泛研究的晚期胀泡的L82基因的分离和表征。L82是一个复杂基因,跨越至少50kb的基因组DNA,产生至少七种不同的嵌套mRNA,并且与一个新的基因家族具有同源性。与大多数先前表征的胀泡基因不同,L82广泛的发育表达模式表明它受蜕皮激素依赖性和非依赖性调控机制的共同控制。通过转基因挽救发育延迟和羽化致死表型鉴定出了L82突变。

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