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秀丽隐杆线虫基因ham-2将Hox模式形成与HSN运动神经元的迁移联系起来。

The Caenorhabditis elegans gene ham-2 links Hox patterning to migration of the HSN motor neuron.

作者信息

Baum P D, Guenther C, Frank C A, Pham B V, Garriga G

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley, California 94720-3204, USA.

出版信息

Genes Dev. 1999 Feb 15;13(4):472-83. doi: 10.1101/gad.13.4.472.

Abstract

The Caenorhabditis elegans HSN motor neurons permit genetic analysis of neuronal development at single-cell resolution. The egl-5 Hox gene, which patterns the posterior of the embryo, is required for both early (embryonic) and late (larval) development of the HSN. Here we show that ham-2 encodes a zinc finger protein that acts downstream of egl-5 to direct HSN cell migration, an early differentiation event. We also demonstrate that the EGL-43 zinc finger protein, also required for HSN migration, is expressed in the HSN specifically during its migration. In an egl-5 mutant background, the HSN still expresses EGL-43, but expression is no longer down-regulated at the end of the cell's migration. Finally, we find a new role in early HSN differentiation for UNC-86, a POU homeodomain transcription factor shown previously to act downstream of egl-5 in the regulation of late HSN differentiation. In an unc-86; ham-2 double mutant the HSNs are defective in EGL-43 down-regulation, an egl-5-like phenotype that is absent in either single mutant. Thus, in the HSN, a Hox gene, egl-5, regulates cell fate by activating the transcription of genes encoding the transcription factors HAM-2 and UNC-86 that in turn individually control some differentiation events and combinatorially affect others.

摘要

秀丽隐杆线虫的HSN运动神经元允许在单细胞分辨率下对神经元发育进行遗传分析。egl-5 Hox基因对胚胎后部进行模式化,是HSN早期(胚胎期)和晚期(幼虫期)发育所必需的。在这里,我们表明ham-2编码一种锌指蛋白,它在egl-5的下游起作用,指导HSN细胞迁移,这是一个早期分化事件。我们还证明,HSN迁移也需要的EGL-43锌指蛋白,在HSN迁移期间特异性地在HSN中表达。在egl-5突变背景下,HSN仍然表达EGL-43,但在细胞迁移结束时表达不再下调。最后,我们发现UNC-86在HSN早期分化中具有新作用,UNC-86是一种POU同源结构域转录因子,先前已证明在调节HSN晚期分化中在egl-5的下游起作用。在unc-86; ham-2双突变体中,HSN在EGL-43下调方面存在缺陷,这是一种egl-5样表型,在单个突变体中均不存在。因此,在HSN中,一个Hox基因egl-5通过激活编码转录因子HAM-2和UNC-86的基因的转录来调节细胞命运,这些转录因子反过来分别控制一些分化事件,并共同影响其他事件。

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