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TRA-1/GLI控制秀丽隐杆线虫中体细胞性腺前体的发育。

TRA-1/GLI controls development of somatic gonadal precursors in C. elegans.

作者信息

Mathies Laura D, Schvarzstein Mara, Morphy Kristin M, Blelloch Robert, Spence Andrew M, Kimble Judith

机构信息

Department of Biochemistry and Howard Hughes Medical Institute, University of Wisconsin-Madison, Madison, WI 53706-1544, USA.

出版信息

Development. 2004 Sep;131(17):4333-43. doi: 10.1242/dev.01288. Epub 2004 Aug 4.

Abstract

TRA-1/GLI is best known as a master regulator of sex determination in the nematode C. elegans, but its fly and vertebrate homologs (e.g. Ci, GLI) regulate embryonic patterning and cell proliferation. In this paper, we show that TRA-1/GLI controls development of the two somatic gonadal precursors (SGPs) in both XX and XO animals, in addition to its role in sex determination. Normally, SGPs reside at the poles of the gonadal primordium and divide according to intrinsic gonadal axes. In tra-1-null mutants, however, SGPs assume non-polar positions and the polarity of one SGP is reversed. Consistent with its SGP function, TRA-1 protein is present in SGPs during embryogenesis and early larval development. Previous studies have shown that the ehn-3 gene also affects SGP positions, and we report here that tra-1 and ehn-3 interact genetically. Whereas SGPs in tra-1 and ehn-3 single mutants are largely normal and generate many descendants, those in tra-1; ehn-3 double mutants do not mature or divide. Furthermore, tra-1 is a dominant enhancer of the ehn-3 gonadal defect, which includes the enhancement of a weak sexual transformation in the gonad. We cloned ehn-3, and found that it encodes a C2H2 zinc-finger protein. A rescuing EHN-3::GFP reporter is predominantly nuclear and expressed specifically in SGPs. The EHN-3 protein is therefore likely to regulate gene expression. We propose that TRA-1/GLI and EHN-3 have overlapping roles in regulation of multiple steps of SGP development. We speculate that regulation of SGP development may be an evolutionarily ancient role of TRA-1/GLI in nematode development.

摘要

TRA-1/GLI作为线虫秀丽隐杆线虫性别决定的主要调节因子最为人所知,但其在果蝇和脊椎动物中的同源物(如Ci、GLI)则调节胚胎模式形成和细胞增殖。在本文中,我们表明TRA-1/GLI除了在性别决定中发挥作用外,还控制XX和XO动物中两个体细胞性腺前体(SGP)的发育。正常情况下,SGP位于性腺原基的两极,并根据内在的性腺轴进行分裂。然而,在tra-1基因缺失的突变体中,SGP处于非极性位置,且一个SGP的极性发生了反转。与其在SGP中的功能一致,TRA-1蛋白在胚胎发生和幼虫早期发育过程中存在于SGP中。先前的研究表明,ehn-3基因也会影响SGP的位置,我们在此报告tra-1和ehn-3在遗传上相互作用。虽然tra-1和ehn-3单突变体中的SGP基本正常并产生许多后代,但tra-1;ehn-3双突变体中的SGP不会成熟或分裂。此外,tra-1是ehn-3性腺缺陷的显性增强子,其中包括性腺中弱性转化的增强。我们克隆了ehn-3,发现它编码一种C2H2锌指蛋白。一个具有拯救作用的EHN-3::GFP报告基因主要定位于细胞核,并在SGP中特异性表达。因此,EHN-3蛋白可能调节基因表达。我们提出TRA-1/GLI和EHN-3在SGP发育的多个步骤的调节中具有重叠作用。我们推测SGP发育的调节可能是TRA-1/GLI在线虫发育中一个进化上古老的作用。

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