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由同胸基因编码的含同源结构域和不含同源结构域的异构体的不同功能。

Distinct functions of homeodomain-containing and homeodomain-less isoforms encoded by homothorax.

作者信息

Noro Barbara, Culi Joaquim, McKay Daniel J, Zhang Wen, Mann Richard S

机构信息

Department of Biochemistry and Molecular Biophysics, Columbia University, New York, New York 10032, USA.

出版信息

Genes Dev. 2006 Jun 15;20(12):1636-50. doi: 10.1101/gad.1412606.

Abstract

The homothorax (hth) gene of Drosophila melanogaster is required for executing Hox functions, for head development, and for forming the proximodistal (PD) axis of the appendages. We show that alternative splicing of hth generates two types of protein isoforms, one that contains a DNA-binding homeodomain (HthFL) and one that does not contain a homeodomain (HDless). Both types of Hth isoforms include the evolutionarily conserved HM domain, which mediates a direct interaction with Extradenticle (Exd), another homeodomain protein. We show that although both HthFL and HDless isoforms of Hth can induce the nuclear localization of Exd, they carry out distinct sets of functions during development. Surprisingly, we find that many of hth's functions, including PD patterning and most Hox-related activities, can be executed by the HDless isoforms. In contrast, antennal development shows an absolute dependency on the HthFL isoform. Thus, alternative splicing of hth results in the generation of multiple transcription factors that execute unique functions in vivo. We further demonstrate that the mouse ortholog of hth, Meis1, also encodes a HDless isoform, suggesting that homeodomain-less variants of this gene family are evolutionarily ancient.

摘要

果蝇的同胸(hth)基因对于执行Hox功能、头部发育以及形成附肢的近远轴(PD轴)是必需的。我们发现,hth的可变剪接产生了两种类型的蛋白质异构体,一种含有DNA结合同源结构域(HthFL),另一种不含有同源结构域(HDless)。两种类型的Hth异构体都包含进化上保守的HM结构域,该结构域介导与另一种同源结构域蛋白额外齿状蛋白(Exd)的直接相互作用。我们表明,虽然Hth的HthFL和HDless异构体都能诱导Exd的核定位,但它们在发育过程中执行不同的功能集。令人惊讶的是,我们发现hth的许多功能,包括PD模式形成和大多数与Hox相关的活动,都可以由HDless异构体执行。相比之下,触角发育绝对依赖于HthFL异构体。因此,hth的可变剪接导致产生多种在体内执行独特功能的转录因子。我们进一步证明,hth的小鼠直系同源基因Meis1也编码一种HDless异构体,这表明该基因家族的无同源结构域变体在进化上是古老的。

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